From 78a73ca926b16acc1bff99270b3953dbc16b7204 Mon Sep 17 00:00:00 2001 From: Nick Machairas Date: Tue, 13 Jun 2017 10:18:46 -0400 Subject: [PATCH] push 2.0.b files --- Complete.xsd | 30 + Geotechnical.xsd | 1046 ++++ Kernel.xsd | 5504 +++++++++++++++++++ example/testinstance20b.xml | 5581 +++++++++++++++++++ glrProfile_diggs.xsd | 601 ++ glrovProfile_diggs.xsd | 63 + gml3.2Profile_diggs.xsd | 2169 ++++++++ gml3.3Profile_diggs.xsd | 25 + witsml/1.3.1.1/typ_baseType.xsd | 238 + witsml/1.3.1.1/typ_catalog.xsd | 7515 ++++++++++++++++++++++++++ witsml/1.3.1.1/typ_dataTypes.xsd | 753 +++ witsml/1.3.1.1/typ_measureType.xsd | 317 ++ witsml/1.3.1.1/typ_quantityClass.xsd | 774 +++ xlinks.xsd | 124 + xml.xsd | 287 + 15 files changed, 25027 insertions(+) create mode 100644 Complete.xsd create mode 100644 Geotechnical.xsd create mode 100644 Kernel.xsd create mode 100644 example/testinstance20b.xml create mode 100644 glrProfile_diggs.xsd create mode 100644 glrovProfile_diggs.xsd create mode 100644 gml3.2Profile_diggs.xsd create mode 100644 gml3.3Profile_diggs.xsd create mode 100644 witsml/1.3.1.1/typ_baseType.xsd create mode 100644 witsml/1.3.1.1/typ_catalog.xsd create mode 100644 witsml/1.3.1.1/typ_dataTypes.xsd create mode 100644 witsml/1.3.1.1/typ_measureType.xsd create mode 100644 witsml/1.3.1.1/typ_quantityClass.xsd create mode 100644 xlinks.xsd create mode 100644 xml.xsd diff --git a/Complete.xsd b/Complete.xsd new file mode 100644 index 00000000..7dbed6fc --- /dev/null +++ b/Complete.xsd @@ -0,0 +1,30 @@ + + + + + + + + + + + + + + + + diff --git a/Geotechnical.xsd b/Geotechnical.xsd new file mode 100644 index 00000000..e958d72e --- /dev/null +++ b/Geotechnical.xsd @@ -0,0 +1,1046 @@ + + + + + + + + + + + + + + The Atterberg limits are a basic measure of the nature of a fine-grained soil. Depending on the water content of the soil, it may appear in four states: solid, semi-solid, plastic and liquid. In each state the consistency and behavior of a soil is different and thus so are its engineering properties. Thus, the boundary between each state can be defined based on a change in the soil's behavior. The Atterberg limits can be used to distinguish between silt and clay, and it can distinguish between different types of silts and clays. + + + + + Base type for AtterbergLimitsTest + + + + + + + True if sample is oven dried at 100 deg C or hotter prior to testing; otherwise false. True value for this property should produce a liquid_limit_oven_dried reportable result + + + + + Value is wet if wet sieving on No. 40 screen (0.425 mm) is performed; dry if dry sieving on No. 40 screen (0.425 mm) is performed; none if no sieving is performed (sample is all finer-grained than 0.425 mm or coarser particles are picked out; unknown if not known. If value is None, the property handRemoved should be used. + + + + + + + + + + + + + True if plus screen No. 40 particles are removed from the sample by hand, false if not. If no sieving is performed this property is required + + + + + Estimate of percent of sample retained on No. 40 screen. If no sieving is performed, this value would hold the estimated percentage of plus 40 particles removed by hand from the sample, if applicable. String type. + + + + + + Value is true if the liquid limit method is multi-point, false if liquid limit is calculated from a single point test + + + + + Property containing one or more CasagrandeTrial or FallConeTrial objects detailing results of these various liquid limit tests + + + + + + Property containing one or more CasagrandeTrial or FallConeTrial objects detailing results of these various liquid limit tests + + + + + + Property containing one or more PlasticLimitTrial objects detailing the results of each plastic limit trial + + + + + Property containing one or more ShrinkageLimitTrial objects detailing the results of each shrinkage limit trial + + + + + + + + + + + + + + + True if the liquid limit device is manual crank, false if motorized + + + + + The number of drops of the brass cup needed to close the groove in the sample + + + + + + Moisture content for this trial + + + + + + + + + + + + + + + The distance fall cone penetrated soil sample in this trial + + + + + + Moisture content for this trial + + + + + + + + + + + + + + + + + + + + + + + + + True if thread rollout is done manually, false if otherwise + + + + + Moisture content for this trial + + + + + + + + + + + + + + + + + + + + Moisture content for the wet soil paste + + + + + + + + + + + + + + + + + The Compaction Test is a laboratory method of experimentally determining the optimal moisture content at which a given soil type will become most dense and achieve its maximum dry density. + + + + + Base type for CompactionTest + + + + + + + + + + + + + + + + + + + + + Results for each trial + + + + + Property for CompactionTestTrials, required parent element that holds the multiple trials. + + + + + + + + Base type for CompactionTestTrials + + + + + + + The count of the test cycle + + + + + Moisture content measured in this trial. + + + + + Dry unit weight measured in this trial. + + + + + Weight of water added or subtracted from this trial specimen (California Test 216) + + + + + Tamper reading (California Test 216) + + + + + + + + + + The Density Test produces density values, mass per volume. + + + + + The Driven Penetration Test includes all methods that involve driving a rod (with or without a sampler) by impact hammer. The most common test of this type inclue the Standard Penetration Test and the Becker Hammer Test. + + + + + Base type for DrivenPenetrationTest + + + + + + + Type of penetration test performed, e.g. Standard Penetration Test, Becker Hammer Test, etc. + + + + + The type of hammer used for the sampling and penetration, including the mechanism used to lift and drop the hammer assembly. Additional details about the sampler (e.g. cathead diameter, number of turns, etc) can be mapped to the equipment object. + + + + + The hammer mass used to drive the sampler. + + + + + The hammer drop height. + + + + + A description of the energy efficiency of the hammer. + + + + + The length of the sampler barrel. + + + + + The inside diameter of the sampler. + + + + + A description of the liner, if used. + + + + + A description of the basket retainer, if used. + + + + + The type of sampling rods used for penetration. + + + + + The external diameter of the sampling rods. + + + + + The drive rod weight per unit length. + + + + + Casing depth at time of test + + + + + The distance the sampler penetrates the soil under its own weight before applying hammer blows + + + + + Depth to water at time of test. + + + + + Total distance the sampler penetrated the soil following completion of the procedure + + + + + + + + + + Water content or moisture content is the quantity of water contained in a material, expressed as a ratio. Also referred to as moisture content, this is the mass of water divided by the mass of the solids, expressed as a percentage. + + + + + + + + + + + + True if water content measurement is taken from trimmings of a prepared specimen; false if derived from an entire specimen + + + + + Temperature of the oven or other drying apparatus + + + + + Amount of time specimen was maintained at drying temperature + + + + + + + + + This test produces the distribution of particle sizes in soils as determined by sieve analysis and/or hydrometer analysis. + + + + + Base type for ParticleSizeTest + + + + + + + + + + + + + + Base type for ParticleSizeTest + + + + + + + True if the sample is wet sieved (eg. washed through the screen; false if not. + + + + + A description of the condition of sand and gravel size particles in the specimen that could bias the particle-size results (eg. hard, soft, friable, weathered). Intended to come from a controlled list. + + + + + + + + + + + + + + + + + + Base type for ParticleSizeTest + + + + + + + Weight of the sediment used for the test (after passing through a sieve) + + + + + Diameter of the sieve used (typically 2 mm - No. 10 sieve) + + + + + Time interval that sediment is left to stand in cylinder prior to test + + + + + Device used for dispersing sediment (eg. magnetic stirrer, air jet, etc.). Intended to come from a controlled list. + + + + + Duration of dispersion + + + + + Type of hydrometer used (eg. 151H, 152H). Intended to come from a controlled list. + + + + + Specific gravity used for calculations + + + + + + + + + + + + + + + + + Base type for ParticleSizeTest + + + + + + + Time that measurement is taken + + + + + The elapsed time of the hydrometer reading since the start of the test + + + + + The value read from the hydrometer at reading time + + + + + The temperature at the time of the hydrometer reading + + + + + The composite correction applied + + + + + The corrected hydrometer reading after correction applied + + + + + The the distance through which soil particles fall in a given +period of time + + + + + Particle size computed from Stoke's Law + + + + + Percent of sediment smaller than particle diameter + + + + + + + + + + + + + + + Provides data structure to capture blow counts for tests where samplers or instruments are driven by impact methods. + + + + + Base type for DriveSet object. + + + + + + + An integer that indicates the location of the drive set. The first or seating drive of a test would be assigned an index of 1, the next drive set an index of 2, etc. An index of 1 should only be used for the seating drive. + + + + + An integer value of the number of hammer blows in this drive set. + + + + + The distance the sampler is driven into the soil in this drive set. + + + + + Duration of delay before increment started. + + + + + Maximum torque required to rotate rods. + + + + + + + + + This is the property that contains the DriveSet object(s). It is needed to satisfy the GML object-property rule when DriveSet is used as an element in another test. + + + + + + + + Provides data structure to capture percentage of particle sizes in a sample. + + + + + Base type for Grading object. + + + + + + + Size of this screen openings of the sieve or grain diameter evaluated via hydrometer, related to the value entered in the percentPassing or percentRetained property. + + + + + + The number of the sieve (for sieve analyses) + + + + + The amount of the total sample "passing" (that has particle size smaller than) this size fraction. Expressed as a weight percent. + + + + + The amount of the total sample "retained" at this size fraction (that has particle size greater or equal to the particleSize property. Expressed as a weight percent. + + + + + The dry weight of sample "retained" at this size fraction (that has particle size greater or equal to the particleSize property. + + + + + name/value pairs of other grading parameters not specifically in the Grading object + + + + + + + + + This is the property that contains the Grading object(s). It is needed to satisfy the GML object-property rule when Grading is used as an element in another test. + + + + + + + + Data properties for material left in the pan (passing all sieves) or finest size fraction + + + + + Base type for Grading object. + + + + + + + Percent of the sample lost as a result of the sieve analysis. This is equal to 1- (final weight (cumulative weights of all particle sizes) / initial sample weight)* 100 + + + + + The amount of the cumulative soil sample "retained" on the pan. Expressed as a weight percent. + + + + + The cumulative dry weight of sample "retained" on the pan. This value is less than or equal to the dry weight of the sample, depending on loss. + + + + + name/value pairs of other grading parameters not specifically in the Grading object + + + + + + + + + This is the property that contains the Grading object(s). It is needed to satisfy the GML object-property rule when Grading is used as an element in another test. + + + + + + + + + Linear shrinkage is the decrease in length of a soil sample when oven-dried, starting with a moisture content of the sample at the liquid limit. + + + + + Base type for LinearShrinkageTest + + + + + + + Size fraction from which test portion was obtained. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + This test measures volatile organic compounds and other gases. + + + + + The Cone Penetration Test is an in situ testing method used to determine the geotechnical engineering properties of soils and delineating soil stratigraphy. The test method consists of pushing an instrumented cone, with the tip facing down, into the ground at a controlled rate. + + + + + Base type for StaticConePenetrationTest + + + + + + + The type of static cone penetrometer used for testing. + + + + + The distance between the tip and the center of the friction sleeve. A unit of measure is required in the uom attribute. + + + + + A description of the type, size and location of the friction reducer behind the base of the cone should be reported if used + + + + + The surface area of the friction sleeve located immediately behind the penetrometer tip. + + + + + The correction necessary to adjust the penetration cone resistance due to penetration water pressures acting behind the cone tip. + + + + + The rate of advance of the penetrometer. + + + + + The type of Piezocone is defined in part by the location of the filter element. + + + + + + The type of pushing rods used for CPT penetration. Standard nomenclature can be used such as A-rod or N-rod + + + + + The capacity of the tip load cell. + + + + + The capacity of the sleeve load cell. + + + + + The capacity of the surface load cell. + + + + + The apex angle of the conical point of the penetrometer tip. + + + + + The conical base area of the penetrometer tip. + + + + + + + + + Provides data structure to capture pore pressure sensor metadata. + + + + + Base type for PorePressureElement. + + + + + + + The id number or value that identifies this filter element + + + + + The location of the filter element as distance from the cone tip + + + + + The capacity of the pore pressure load cell. + + + + + The type of material used as porous filter element. The following materials are typically used: a) plastic, b) sintered bronze, c) sintered steel, d) ceramic, or e) other. This value is extendable using Other: xx. + + + + + The fluid used to saturate the porous filter element. The following deaired fluids are typically used: a) water, b) glycerin, c) silicon oil, or d) other This value is extendable using Other: xx. + + + + + + A description of the procedure used to saturate the porous filter element. + + + + + Diggs:Specification + + + + + + + + + + This is the property that contains the PorePressureElement object(s). It is needed to satisfy the GML object-property rule when PorePressureElement is used as an element in another test. + + + + + + + + This is a generic test structure to capture all forms of geophysical test data collected by wireline methods. + + + + + Base type for WirelineLog + + + + + + + Log run number. This should normally be a number; however some legacy systems encode other information in this value. + + + + + The bottom hole assembly run number associated with this log. + + + + + Log parameters that apply to the overall log. + + + + + + + + + + + + + diff --git a/Kernel.xsd b/Kernel.xsd new file mode 100644 index 00000000..b0f54e1b --- /dev/null +++ b/Kernel.xsd @@ -0,0 +1,5504 @@ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Provides a reference to the gml:identifier value, which follows a pattern + restriction conforming to the urn structure of identifiers + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + A Project is a collection of sampling features, sampling activities, + samples, and measurements
that constitutes a business activity. A + project may occur at a physical location, in which case it can optionally contain + geometries.
+
+
+
+
+ + + + + + + + + + + + + + + + + + + + + + + The date that this instance file was created. + + + + + The effective date for the data in this XML instance. It would likely + represent the most recent date when data in the instance was last added to or + modified. + + + + + The default language used in this instance document + + + + + + A property element that supports a value by reference only. The + target value is indicated in the appinfo element. + diggs:BusinessAssociate + + + + + + + An uncontrolled string that identifies conditions and limitations of + the data included in this instance. + + + + + If appropriate, the software that created the instance. + + + + + + The intended destination for this XML instance; eg. chris@diggsml.org + or ftp://uploaduser:password@ftp.diggsml.org/auto_import + + + + + If appropriate, the software that is intended to consume the + file. + + + + + A series of remarks that provides a history of similar xml instance + transmissions. Provides a way for data providers and receivers to track multiple + versions of similar data transmissions. + + + + + + + + + + + + + + + + + + + + + + + + A text string to provide information about the status of the object to be used to track QA/QC controls, review or release status, etc. The values used are intended to come from a controlled list of terms maintained by an organization. + + + + + + diggs:AssociatedFile + A reference to an AssociatedFile object that provides information about external files or documents associated with this feature. The target value is indicated in the appinfo element. + + + + + Identifies a specific role or task performed that is associated with this specific feature, the person or organization that performed the role, and associated time frame, if applicable. + + + + + Any comment or remark associated with this specific feature. + + + + + + + Identifies the language used for the values of properties in this feature. Optional; if not used language is assumed to be English. + + + + + + + + + + + + + + + The id of this feature. The id must be unique within a DIGGS xml instance. + + + + + + + + + + + + + + + + A text string to provide information about the status of the object to + be used to track QA/QC controls, review or release status, etc. The values used are + intended to come from a controlled list of terms maintained by an + organization. + + + + + + diggs:AssociatedFile + A reference to an AssociatedFile object that provides information about external files or documents associated with this feature. The target value is indicated in the appinfo element. + + + + + Identifies a specific role or task performed that is associated with this specific feature, the person or organization that performed the role, and associated time frame, if applicable. + + + + + Any comment or remark associated with this specific feature. + + + + + + + + + + + + + + + + A text string to provide information about the status of the object to + be used to track QA/QC controls, review or release status, etc. The values used are + intended to come from a controlled list of terms maintained by an + organization. + + + + + diggs:AssociatedFile + A reference to an AssociatedFile object that provides information about external files or documents associated with this feature. The target value is indicated in the appinfo element. + + + + + Any comment or remark associated with this specific object. + + + + + + Identifies the language used for the values of properties in this feature. Optional; if not used language is assumed to be English. + + + + + + + + + + + + + + + + + + + + + + + + + + A text string to provide information about the status of the object to + be used to track QA/QC controls, review or release status, etc. The values used are + intended to come from a controlled list of terms maintained by an + organization. + + + + + Any comment or remark associated with this specific object. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + A property element that supports a value by reference only. The target + value is indicated in the appinfo element. + diggs:BusinessAssociate + + + + + + + + + + + + + + + + + + + + + + + A property element that supports a value by reference only. The target + value is indicated in the appinfo element. + diggs:AssociatedFile + + + + + + + + A property element that supports a value by reference only. The + target value is indicated in the appinfo element. + diggs:BusinessAssociate + + + + + + + + A property element that supports a value by reference only. The + target value is indicated in the appinfo element. + diggs:BusinessAssociate + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + diggs:AssociatedFile + A property element that supports a value by reference only. The target + value is indicated in the appinfo element. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + diggs:BusinessAssociate + A property element that supports a value by reference only. The target + value is indicated in the appinfo element. + + + + + + + + diggs:Specification + A property element that supports a value by reference only. The target + value is indicated in the appinfo element. Use specificationRef to refer to a DIGGS + specification object or to an external URN that describes the procedure. For a simple + description of the specification or to refer to a standard for information purposes + only, use specification. + + + + + A text string that describes the test specification or procedure used. - + eg. ASTM 2722 as informative. Use specificationRef to refer to a DIGGS specification + object or to an external URN that describes the procedure. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The date/time that begins the interval + + + + + + The date/time that ends the interval. Alternatively, the duration property may be used to define the time interval of interest. + + + + + The duration of time since start, defining the time interval of interest. Both end and duration are allowed and could produce different time intervals depending on the nature of the activity or commentary. Where there are differences in elapsed time and duration these would be explained or expanded on in the remark property. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Description of how sample(s) was prepared for the test, if applicable. + If a preparation is specified by a test specification, this information can be + referenced using the specificationRef or specifcatiom property and not needed + here + + + + + + + + Description of how sample(s) was prepared for the test, if applicable. + If a preparation is specified by a test specification, this information can be + referenced using the specificationRef or specifcatiom property and not needed + here + + + + + + + + + + + + + + + + + + + + + + + + + + + + A metadata property type that supports a value by reference only. The target + Metadata element is indicated in the appinfo value of the element whose type is + MetadataReferenceType. + + + + + + + + + + + + + + + + + + + + + + + + + + + + diggs:BusinessAssociate + A property element that supports a value by reference only. The + target value is indicated in the appinfo element. + + + + + + + + + + + + + + + + + + + + + + + + + + + A property element that supports a value by reference only. The + target value is indicated in the appinfo element. + diggs:BusinessAssociate + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + A sampling feature that is a point in or on the earth's surface where observations or + tests are performed, where samples are collected, or where monitoring devices are + installed. + + + + + + + + + A definition of the type of station (eg. outcrop, survey marker, etc.). + This is intended to come from a list controlled by an authority. + + + + + + + + + + + + + + Provides accuracy information for the reference point + coordinates. + + + + + + + + + + + + + + + + Provides accuracy information for the referencePoint. Accuracy for the + centerLine coordinates are specified in the linearElementAccuracy property of the + LinearSpatialReferenceSystem that uses the centerLine as the linear + element. + + + + + + + + + + + An element that carries xlink:href to the referenced feature as well as the + gml:identifier of the referenced feature, as information + + + + + + + + Provides a fully qualified gml:identifier value of the target + feature. Used primarily to reference a feature by a globally unique identifier as opposed to the gml:id + + + + + + + + + + + + + + A test event is a time-based or location-based recording of + instantaneous conditions or parameters associated with an in-situ test, such as + casing depth, water level, or any custom parameters. This property holds one or more + Event objects; Event objects are associated with the type of sampling feature that + the in-situ test is performed in. For example, for a standard penetration test + performed in a borehole, a BoreholeEvent object would be used in the testEvents + property to record the depth to water at various times during the + test. + + + + + + + + + + Diggs:Project + A property element that supports a value by reference only. The target value is + indicated in the appinfo element. + A reference to the project that first established this feature + + + + + Diggs:Project + A reference to a project that uses the feature within its business activity. + The project is not intended to be the one that established the feature in the first place. + The property originalProjectRef should be used for that purpose. + A property element that supports a value by reference only. The target value is + indicated in the appinfo element. + + + + + Diggs:Project + A reference to a project that uses the feature within its business activity. + The project referenced here is the associated project for this instance. Other project + references can be transmitted using the associatedProjectRef element. To identify the + creating project for a feature, the property originalProjectRef should be used. + A property element that supports a value by reference only. The target value is + indicated in the appinfo element. + + + + + Diggs:Measurement + A reference to a Measurement feature that is associated with this feature. + A property element that supports a value by reference only. The target value is + indicated in the appinfo element. + + + + + Diggs:AbstractLaboratoryTest + A reference to a laboratory test that is associated with this feature. + A property element that supports a value by reference only. The target value is + indicated in the appinfo element. + + + + + Diggs:AbstractSamplingFeature + A reference to a sampling feature that is associated with this feature. + A property element that supports a value by reference only. The target value is + indicated in the appinfo element. + + + + + Diggs:AbstractSamplingFeature + A reference to a sampling feature that was created by this feature. + A property element that supports a value by reference only. The target value is + indicated in the appinfo element. + + + + + Diggs:Sample + A reference to a sample that is associated with this feature. + A property element that supports a value by reference only. The target value is + indicated in the appinfo element. + + + + + Diggs:SampleProduced + A reference to a SampleProduced object within the SamplingActivity associated with this feature. This is a required property that links the sample to its location and initial sampleContainer properties + A property element that supports a value by reference only. The target value is + indicated in the appinfo element. + + + + + Diggs:SamplingActivity + A reference to a sample activity that is associated with this feature. + A property element that supports a value by reference only. The target value is + indicated in the appinfo element. + + + + + Diggs:AbstractGroup + A reference to a group that is associated with this feature. + A property element that supports a value by reference only. The target value is + indicated in the appinfo element. + + + + + A reference to a sensor that is associated with this feature. + A property element that supports a value by reference only. The target value is + indicated in the appinfo element. + + + + + The action taken to obtain or produce a physical sample, although the activity + may not produce a sample (eg. a core run that produces no recovery). This activity typically + occurs at a location on a sampling feature, or could occur elsewhere (eg. a laboratory) in + the case of test or blank samples, or can produce aggregate samples where the location of + the samples produced have no meaning. All Sample features must refer to a SamplingActivity + feature. + + + + + + + + + + + + + + + + + + + + + + diggs:Sample/@gml:id + A reference to a sample or samples that are used to create the sample(s) + (identified in the sampleProduced property) produced by this activity. This element is + only used for activities that subsample or aggregate samples from other samples. For + aggregate samples, the percentage attribute optionally defines how much of the total + new sample is composed from the source sample. + + + + + + A controlled list that indicates the type of sampling activity. Can be used by applications to validate other activity info. One of the following strings must be used: + +collect - activity created a sample or samples by collecting a sample from a sampling feature; + +aggregate - activity created a sample or samples by aggregating existing samples; related Sample(s) should contain more than one sourceSampleRef + +subsample - activity created a sample or samples by subsampling an existing sample; only one sourceSampleRef should be specified for the related Sample(s). + +test - activity produced a test, standard or blank sample that does not relate to any field sample or sampling feature; activity should be related to a project and no sourceSampleRef should be specified for the related Sample(s). + +none - the sample activity failed to produce any physical sample. + + + + + + + + + + + + + + Identifies the samples, the location(s) of samples (optional) and derived sample type (a controlled list) that are produced by this sampling activity + + + + + The date/time for this activity + + + + + + + diggs:Equipment + A property element that supports a value by reference only. The + target value is indicated in the appinfo element. + + + + + + + + diggs:Specifications + A property element that supports a value by reference only. The + target value is indicated in the appinfo element. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + A system of zones associated with a sampling feature for which as single class of description is assigned (eg. lithology, color, discontinuity, etc.) + + + + + + + + + + + + + + + + + + + An interval or region defined at a sampling feature that contains observations + or interpretations. + + + + + The base type for all descriptions, which extend this type + + + + + + + + If the description derives from a sample, then this + element can be optionally used to point to the subject Sample feature via the + xlink:href attribute + + + + + If the description derives from a measurement, then this + element can be optionally used to point to the subject Test or Monitor feature via the + xlink:href attribute + + + + + Appropriate SamplingFeatureLocation properties that are relevant to + the description zone: 1) inearIntervalLocation (for linear sampling features where the + full zone is contained within a linear sampling feature) and linearPointLocation + (for linear sampling features where only one boundary of layer is within the + sampling feature), planarIntervalLocation (one boundary in a planar sampling + feature) and planarSurfaceLocation (surface on a planar feature). + + + + + True or false, indicating whether the geometry of the uppermost position of + the zone represents the true top of the feature being defined (true) or (false) + whether the top represents the upper extent of the zone that is described by the + extent of the sampling feature itself. + + + + + True or false, indicating whether the geometry of the lowermost position of + the zone represents the true base of the feature being defined (true) or (false) + whether the base represents the lower extent of the zone that is defined by the + extent of the sampling feature itself. + + + + + + + + + + + + + + A text string defining the kind of "Color Description" system described *("eg. Munsell Color", "wet color". + + + + + + + + + + + + + + + A color layer describes the color of materials encountered. All layers within a + color layer system must not overlap, although multiple colors can be described within a + single zone. + + + + + + + + + + + Color layers must not overlap + + + + + + + + Description of the boundary at the base of the layer + + + + + + + + + + + + + + The code value that defines the color; preferably defined by an + authority identified in the codespace attribute (eg. 10YR4/3) + + + + + A measure of the amount of the color present as a string type, intended + to come from a controlled list (eg. few, rare, common, etc.) + + + + + A measure of the amount of the color present, expressed as a + percentage. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + A text string defining the kind of "Constituent Description" system described (eg. :"Fossils" or "Diagenesis". + + + + + + + + + + + + + + + Constituent layers describe details of earth materials encountered within a + sampling feature. Constituent layers restricted to a specific lithologic layer are encoded + as constituents in the Lithology layers themselves. Observations within a constituent layer system + need not be continuous and may overlap, but layers with the same named constituents cannot + overlap. + + + + + + + + + + + + + + + + + + + + The code value that defines the consituent (eg. "SM" or "gastropod"; + preferably defined by an authority identified in the codespace + attribute + + + + + A measure of the amount of the constituent present as a string type, + intended to come from a controlled list (eg. few, rare, common, + etc.) + + + + + A measure of the amount of the constituent present, expressed as a + percentage. + + + + + A description of how the constituent is distributed within the interval + (eg. scattered, sporadic, locally, etc.). Intended to come from a controlled + list + + + + + + + + + + + + A name that provides the classification code for the constituent (required) + and optional description, along with a description of the abundance of this constituent + (if applicable). + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + A text string defining the kind of Discontinuity system described (eg. Joints). + + + + + + + + + + + + + + + Describes fractures and joints and their spacing. Individual discontinuities or + zone of discontinuities within a discontinuity system may overlap. + + + + + A discontinuity or zone of discontinuities + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Hardness of the infill material + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Describes the classification system used to define the lithology classification codes (eg. Unified Soil Classification) used within this system + + + + + + + + + + + + + + + + Lithology layers must not overlap within a layer system + + + + + + + + A description of the lithologies that make up a subsidiary portion of + the overall lithologic classification of the layer, or exist as specific components + of the primarylithologic classification + + + + + + + + + + + + + + + + A measure of the amount of the subordinate lithology present as a + string type, intended to come from a controlled list (eg. few, rare, common, + etc.) + + + + + A measure of the amount of the subordinate lithology present, expressed + as a percentage. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + A value that describes the method by which the observation or measurement was + determined. Allowed values are: - assigned; value is assigned a priori - inferred; estimated + from some indirect measurement such as elog - measured; determined from laboratory analysis + (such as particle size or other measurement means - missing; method known but not reported + here - other; method other than the choices in this list. Further information should be + provided in the remarks property - reported; description comes from a third party source - + unknown; method of description unknown and can likely not be determined - visual; + observation comes from visual inspection + + + + + + + + + + + + + + + + + + + + + + + + + + The value that describes the geology (eg. "SM" or + "silty sand"; in the classification system defined in the classificationSystem property of the associated LithologySystem. This property should be used in preference to lithDescription to define lithology for rigid definitions that adhere to a specific classification system. Either a classificationCode property or lithDescription property must be present (or both). + + + + + lithDescription should be use in conjunction with classificationCode (eg. well-graded sand for classification code = SW) to further describe the lithology or for a more extensive description in lieu of using color, particleSize, grainSizeDistribution, descriptiveProperties, and constituents property elements (eg. well-graded sand (SW), fine-grained, dark grey, massive, dry, hard). If there is no rigidity of language in the classification system, then lithDescription can be used instead of classificationCode, but classificationCode is preferred where applicable. + + + + + + + lithDescription should be use in conjunction with classificationCode (eg. well-graded sand for classification code = SW) to further describe the lithology or for a more extensive description in lieu of using color, particleSize, grainSizeDistribution, descriptiveProperties, and constituents property elements (eg. well-graded sand (SW), fine-grained, dark grey, massive, dry, hard). If there is no rigidity of language in the classification system, then lithDescription can be used instead of classificationCode, but classificationCode is preferred where applicable. + + + + + + + From AGS, this defines a legend code primarily for graphic display; + should use classificationCode primarily, although legendCode can be optionally used as another + classification identifier; eg. "silty clay" and "clayey silt" could be assigned to a + different alternate classification called "silt" + + + + + + Particle size distribution information providing details such as mean + grain size, maximum grain size, etc. + + + + + + Constituents are materials and structures associated with this geology + classification and the lithology layer or sample which this lithology relates to, + but not considered significant enough to record as part of a separate layer system + or where location within a lithology layer or sample is not important to preserve + (except as a comment). Constituents of a lithology are descriptions that generally + fall into one of the following classes: 1) types of sedimentary or physical + structures, 2) types of lithologic, mineralogic or organic accessories (eg. presence + of calcite, gas odor, etc.), 3) types and degree of bioturbation features, 4) types + of diagenetic structures, 5) types of physical structures produced by sampling, 6) + types of fossils, 7) types of trace fossils, 8) types of fractures + + + + + + + + + + + + The gml:description in this context would typically contain a string + descriptor of the lithology. The classificationCode would contain a short code or + descriptor for the lithology, such as "sand" or "SM" used often for lithologic symbology + on logs or maps. Either gml:Description or primaryCodeValue must be included for the + object to be valid (both can be populated). This rule must be checked with + schematron. + + + + + + + + + + + Either value or descriptor should be present. Both are + allowed. + + + + + A numeric value for the particle size, in length units such as mm + diameter, or phi. + + + + + A text description for the particle size, such as "very fine sand", + etc. + + + + + + + A text description for the particle size, such as "very fine sand", + etc. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + A text descriptor (eg. fine sand) or numeric value representing the + mean grain size. + + + + + A text descriptor (eg. fine sand) or numeric value representing the + modal grain size. + + + + + A text descriptor (eg. fine sand) or numeric value representing the + equivalent diameter for the soil. + + + + + A text descriptor (eg. fine sand) or numeric value representing the + minimum diameter of particles in the soil. + + + + + A text descriptor (eg. fine sand) or numeric value representing the + maximum diameter of particles in the soil. + + + + + + + + + + + A value that describes the method by which the lithology was determined. + Allowed values are: - inferred; estimated from some indirect measurement such as elog + - lab test; determined from laboratory analysis (such as particle size - missing; + method known but not reported here - other; method other than the choices in this + list. Further information should be provided in the remarks property - reported; + description comes from a third party source - unknown; method of description unknown + and can likely not be determined - visual; description comes from visual description + of the material + + + + + + + + + + + + + + + + + + Selection from an enumerated list defining the type of planar feature whose orientations are being described in this system (eg. faults, bedding) + + + + + + + + + + + + + + + Orientation layers describe the geometry of vectors or planar surfaces + encountered at a sampling feature, such as bedding, joints, cross-beds, etc. These layers + are designed to characterize regions with generalized geometries. Individual measurements of + planar geometries of boundaries or faults are recorded in Discontinuity or Lithology layers. + Observations within an orientation zone system must not overlap. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The compass bearing of the feature (if linear) or strike of the plane, + from north (range 0-360), where 0 is north and 90 east, etc. + + + + + The inclination of the feature from horizontal (eg. 0 is vertical, 90 + degrees is vertical DOWN) + + + + + + + + + + + + + + + + + + + + Selected from an enumerated list, the type of stratigraphic units described in this system + + + + + + + + + + + + + + + Stratigraphy layers are ordered bodies of rock or sediment, such as formations, + biostratigraphic units or aquifers. Observations within a stratigraphy system must not + overlap, and stratUnit values within a system cannot repeat (eg. they must be unique + within the layer system. + + + + + + + + + The name of the stratigraphic unit (eg. Harold Formation) assigned to + this zone. Should come from a controlled list based on the subtype of the layer + system. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + A text string defining the kind of "Other Description" system described. + + + + + + + + + + + + + + + A structure for defining a layer system of unknown type. Observations consist of + name-value pairs, where these names should reference code lists. As this is an "open" description, no Schematron controls are appropriate here unless defined for a specific use case. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The location of the top surface of a layer (a volume of earth material) + that intersects a trench wall. Depending on how a trench wall is encoded, there + could be multiple line strings that define this top surface. + + + + + The location of the basal surface of a layer (a volume of earth + material) that intersects a trench wall. Depending on how a trench wall is encoded, + there could be multiple line strings that define this basal surface. + + + + + One or more polygons that represent the layer volume in the plane of + the planar sampling feature. This would typically be a ring polygon with curve + members that consist of the layer top intersection, layer bottom intersection, and + two edges that would normally be at the lateral extent of the planar + feature. + + + + + + + + + + + + + + + + + + + + + + + + + + An object that contains the reference to a sample, it's derived type, and location produced by this activity + + + + + + + A specimen of earth material, liquid or gas that is obtained as a result of a + sampling activity, for the purpose of testing and/or observation + + + + + + + + + + A definition of the class of sample collected. This is intended to come + from a controlled list of values. + + + + + Description of container for the sample; intended to be derived from a + controlled list. Example: + + + + + Purpose of taking this sample. This is an uncontrolled string that + describes the test or tests that are intended to be run on this + sample. + + + + + A description of the sample condition; uncontrolled + string + + + + + A description of the sample matrix, if applicable. This is intended to + come from a controlled list. + + + + + + + + + + If sample is cylindrical in shape (eg. a soil or rock core) or a block + sample, select one of the appropriate choices and enter related information in + either cylindricalSampleDetails or blockSampleDetails properties. + + + + + + + + + If the sample is a block sample with integrity and measurable width, + height, and depth, those details are entered here + + + + + + A description of the lithology of the sample (if derived from earth + materials). For a core sample consisting of multiple lithologies, this element + should generally be left blank and a lithologyObservationSystem should be created to carry + the lithologic descriptions related to core samples. + + + + + A description of the lithologies that make up a minor portion of the + sample + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + diggs:BusinessAssociate + A xlink:href reference to a BusinessAssociate that is releasing + custody of the sample + + + + + The name of a BusinessAssociate that is releasing custody of the + sample. A string is used here to name the business associate and does not require + that a BusinessAssociate feature be instantiated. + + + + + + + diggs:businessAssociates/BusinessAssociate/@gml:id + A xlink:href reference to a BusinessAssociate that is receiving + custody of the sample + + + + + The name of a BusinessAssociate that is receiving custody of the + sample. A string is used here to name the business associate and does not require + that a BusinessAssociate feature be instantiated. + + + + + + + + + + + + + + + + + + + + + Description of container for the sample; intended to be derived from a + controlled list. Example: + + + + + Example: + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Closeness of reported coordinate or relative distance values to values accepted + as or being true. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Provides accuracy information for the linear element referenced by this + reference system. + + + + + Provides accuracy information for the location (geometry) elements that + use this linear reference system for their SRS. For example, for depths in a hole, + this property could provide information as to the source and accuracy of depth + values that relate to this reference system. + + + + + + + + + + + + + + + + + + Provides accuracy information for the linear element referenced by this + reference system. + + + + + Provides accuracy information for the location (geometry) elements that + use this linear reference system for their SRS. For example, for depths in a hole, + this property could provide information as to the source and accuracy of depth + values that relate to this reference system. + + + + + + + + + + + + + + + + + + + + + A sampling feature feature that is a deep, narrow excavation made by drilling and/or extraction of earth material. Boreholes are constructed typically for the purpose of + investigating subsurface geologic or geotechnical conditions, exploring for water or oil, + for installation of wells or other downhole monitoring installations. + + + + + + + + + The period of time when the hole is constructed. This should include the entire time the drill rig is on site. + + + + + The measured depth to the bottom of the hole, measured in a hole's + linear referencing system. + + + + + A description of the purpose for drilling the hole (eg. exploratory + boring, monitoring well, etc.). Intended to come from a controlled + list. + + + + + Information on construction of the borehole backfill after + drilling. + + + + + Information on the borehole casing installed while + drilling. + + + + + Information regarding construction of the hole over different depth + intervals + + + + + Information on borehole construction events with time. + + + + + Information on chiseling activity in a hole + + + + + Information about events when the borehole is flushed with + fluid. + + + + + Information on the borehole diameter with depth + + + + + Information on when ground water is struck during drilling of the + hole. + + + + + + + + + + + + + + + + + + + + + Measured depth to base of casing at time water strike occurred; + measured in borehole linear referencing system. + + + + + Measured depth to water level at time of strike;; measured in borehole + linear referencing system. + + + + + A series of water level readings that occur at times following the + initial water strike + + + + + Depth at which water strike is sealed by casing; measured in borehole + linear referencing system. + + + + + + + + + + + + + + + + + + + + + + + + The measure depth to water; measured in a hole's linear referencing + system. + + + + + + + + + + + + + + + + + + + The depth interval in the hole that pertains to the diameter reported, + measured in a linear referencing system. If omitted, it is assumed that the diameter + reported pertains to the entire length of the hole + + + + + The diameter of the borehole over the depth interval + reported. + + + + + + + + + + + + + + + + + + + The depth interval of the flush zone, measured in a linear reference + system. If omitted, it is to be assumed that the flushing activity pertains to the + entire hole length. + + + + + Type of fluid used for flushing. Intended to derive from a controlled + list. + + + + + + Percentage of fluid that returns from the hole following + flushing. + + + + + Color of the flush return; an uncontrolled string. + + + + + + + + + + + + + + + + + + + The measured depth interval over which the chiseling takes place, + recorded in the hole's linear referencing system. + + + + + The amount of time taken to perform the chiseling task. + + + + + Tool used to perform the chiseling. Intended to come from a controlled + list. NOTE: This is currently a code type, but could also be typed as a + gml:ReferenceType to reference an Equipment metadata object. + + + + + + + + + + + + + + + + + + + The location within the sampling feature that corresponds to the + particular construction method being referenced here. If omitted, it is assumed that + the procedures specified apply to the entire extent of the sampling + feature + + + + + The period of time during which the construction event is occurring + + + + + Uncontrolled string describing stability conditions of the hole during this interval + + + + + + diggs:Specification + A property element that supports a value by reference only. The + target value is indicated in the appinfo element. + + + + + + + + A property element that supports a value by reference only. The + target value is indicated in the appinfo element. + diggs:BusinessAssociate + + + + + + + + + + + + + + + + + + + + + Measured Depth to Base of Casing installed at this event time, in the + hole's linear referencing system. + + + + + Measured Depth to Base of Hole at this event time, reported in the + hole's linear referencing system. + + + + + Depth to Water Surface as measured as measured at this event time, + recorded in the hole's linear referencing system. + + + + + + + + + + + + + + + + + + + + Measured Depth to Base of Casing installed at this event time, in the + sounding's linear referencing system. + + + + + Measured Depth to Base of the sounding at this event time, reported in the + sounding's linear referencing system. + + + + + + + + + + + + + + + + + + + + A description or code to what the value property represents. This is + intended to be a controlled value from an authority. + + + + + A value associated with the name. + + + + + + + + + + + + + + + + + + + + + The depth interval in which casing is installed. Recorded in a linear + reference system for the hole/well. If omitted, it is assumed that the casing + information pertains to the entire length of the borehole or well. + + + + + + + + + + + + + + + + + + + + + + + The date/time interval over which the entire backfilling operation was + conducted. Date/time intervals can also be specified for the emplacement of + individual backfill layers in the backfillLayers property. + + + + + The depth intervals where backfill is emplaced. The backfill intervals + should not overlap, nor should there be gaps between intervals. + + + + + + + + + + + + + + + + + + + The depth interval in the borehole (measured in a linear reference + system), where the backfill material was emplaced. If omitted, it is assumed that + the backfill information pertains to the entire length of the hole + + + + + Indicates the date/time during which the backfill was emplaced in this + depth interval. + + + + + The type of material used as backfill (eg. bentonite, cuttings, sand, + etc.). Intended to come from a controlled list assigned to an + authority. + + + + + + + + + + + + + + A relatively shallow excavation into the earth's surface, dug either manually + or by a mechanical excavator. Samples,observations and tests in the trial pit are referenced + in a linear referencing system only (1D). This is a legacy sampling feature to support AGS + trial pit constructs. The trench wall sampling feature should be used to represent more + detail on walls of pits or trenches in 2D. + + + + + + + + + The period of time when the hole is constructed. This should include the entire time the drill rig is on site. + + + + + The maximum depth of the pit, referenced to a linear reference + system. + + + + + The length of the long horizontal dimension of the pit. + + + + + + The length of the short horizontal dimension of the + pit. + + + + + Description of shoring equipment and method. + + + + + A description of the purpose for excavating the pit (eg. exploratory). + Intended to come from a controlled list. + + + + + Information on construction of the trial pit backfill. + + + + + Information regarding construction of the pit over different depth + intervals + + + + + Information on construction of the trial pit with time + + + + + + + + + + + + + + Date/time when this event information was recorded + + + + + + + + + + + + + + + + + + + + + Measured Depth to base of the pit or trench at this event time, + reported in the pit's linear referencing system. + + + + + The horizontal length of the long dimension of the pit or trench at + this event time. + + + + + The horizontal length of the short dimension of the pit or trench at + this event time. + + + + + Uncontrolled string describing stability conditions of the pit or + trench at this point in time. + + + + + + + + + + + + + + + + + + + + + Provides accuracy information for the referencePoint. Accuracy for the + featurePerimeter coordinates are specified in the planarElementAccuracy property of + the PlanarSpatialReferenceSystem. + + + + + + This element defines the polygon extent of the planar feature using a + absolute CRS. This element should be used for visual representations using + typical/simple mapping software + + + + + This element defines the polygon extent of the planar feature using a + relative planar referencing system (must use planarReferencing property contents). + This element should be used for software that can handle planar referencing (e.g. + LinearSpatialReferenceSystem in GML 3.3) + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Indexes things with the same name. That is the first one, the second one, + etc. + + + + + + + + + + + + + + + + A text string describing the consistency of coarse-grained soils (eg. "loose"); intended to come from a controlled list + + + + + A text string describing the bedding orientation (eg. horizontal, inclined, inclined 30 deg NW, etc.) + + + + + A text string describing the bed spacing (eg. "thick", "3 inches"); intended to come from a controlled list + + + + + A text string describing the degree of cementation (eg. "weakly"); intended to come from a controlled list + + + + + A text string describing the consistency of fine-grained soils (eg. "soft"); intended to come from a controlled list + + + + + A text string describing the degree of dilantancy, eg. "slow"; intended to come from a controlled list + + + + + A text string describing the degree of dry strength; intended to come from a controlled list + + + + + A text string describing the moisture of the soil (eg. "wet"); intended to come from a controlled list + + + + + A text string describing the odor of the soil (eg. H2S); intended to come from a controlled list + + + + + A descriptive term or phrase to describe the overall angularity of grains (eg. "well-rounded"). Intended to come from a controlled list. + + + + + A descriptive term or phrase to describe the overall shape (typically sphericity) of particles. Intended to come from a controlled list. + + + + + A descriptive term or phrase to describe the overall particle size + distribution of the soil, eg. "fine sand", "fine to coarse". "silt and very fine + sand". Intended to come from a controlled list. + + + + + A descriptive term or phrase to describe the relative particle sorting + of the soil, eg. "well-sorted". Intended to come from a controlled list. + + + + + A descriptive term or phrase to describe the relative plasticity + of the soil, eg. "non-plastic". Intended to come from a controlled list. + + + + + A text string describing the soil's reaction to HCl (eg. "weak"); intended to come from a controlled list + + + + + A descriptive term or phrase to describe the relative hardness + of rock, as governed by its compressive strengh, eg. "strong". Intended to come from a controlled list. + + + + + A descriptive term or phrase to describe the relative rate of slaking + of rock, eg. "slow". Intended to come from a controlled list. + + + + + A descriptive term or phrase to describe the relative degree of rock, eg. "slightly decomposed", "Grade III", etc. Intended to come from a controlled list. + + + + + A descriptive term or phrase to describe the relative structure of the soil, eg. "prismatic", "blocky", etc. Intended to come from a controlled list. + + + + + A descriptive term or phrase to describe the relative toughness of the soil, eg. "medium", etc. Intended to come from a controlled list. + + + + + A descriptive term or phrase to describe a property not listed in the FieldProperties object. The required propertyName attribute holds the name of the property being described. + + + + + + + + + + + + + + + + + + Same as gml:CodeWithAuthorityType, only without the pattern restriction we've + placed on this term with DIGGS profile of GML 3.2 + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + diggs:AbstractGeometricPrimitiveType is the abstract root type of the geometric + primitives. A geometric primitive is a geometric object that is not decomposed further into + other primitives in the system. All primitives are oriented in the direction implied by the + sequence of their coordinate tuples. + + + + + + + + + + + + + + + diggs:AbstractCurveType is an abstraction of a curve to support the different + levels of complexity. The curve may always be viewed as a geometric primitive, i.e. is + continuous. + + + + + + + + gml:AbstractSurfaceType is an abstraction of a surface to support the different + levels of complexity. A surface is always a continuous region of a plane. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + An act ("event"), whose results are estimates of the value of a property of the + investigation target, measured at a time instant or within a time interval, and within a spatial domain, typically derived from a test procedure. + + + + + + + + + Describes the time that the result applies to the property of the + investigation target. This is often the time of interaction by a sampling activity + or measurement procedure with a real-world feature. + + + + + Describes the time when the result became available, typically when the + procedure associated with the observation was completed For some observations this + is identical to the samplingTime. However, there are important cases where they + differ. The resultTime is the time when the procedure associated with the + measurement act was applied. For some measurements this is identical to + samplingTime, in which case the resultTime may be omitted. Example: Where a + measurement is made on a specimen in a laboratory, the samplingTime should record + the time the specimen was retrieved from its host, while the resultTime should + record the time the laboratory procedure was applied. Example: Where monitoring + observation results are post-processed, the resultTime is the post-processing time, + while the samplingTime preserves the time of initial interaction with the world. + + + + + + Describes the time period during which the result is intended to be + used. + + + + + A property that contains the information about what properties are + being measured, the results of the measurement, and the associated locations that + the measurement results relate to. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + A code or name for the property as used by the data provider. This + value can come from a controlled list of terms or be an uncontrolled text string. + The value would be commonly used to label a column of a log sheet or provide other + local meaning to the property. The value of mnemonic should be unique for all of the + properties included in the dataValue block transmitted as part of this + measurement. + + + + + The data type for this property (eg. double, long, string, + etc.) + + + + + The official name of this property as derived from a dictionary of + defined terms. The codespace value must be populated and should contain the URN to + allow applications to validate this value as a known property. + + + + + Unit of measurement for the property. + + + + + Temperature at which property value is valid, eg. for specific gravity of solids at 20 deg C, this parameter would hold the temperature value + + + + + Compass bearing direction (relative to true north) defining the measurement axis direction (for directional measurements, eg. component of an extensometer, accelerometer, etc.) + + + + + Inclination of measurement axis (measured positively down from horizontal); used for directional measurements, eg. extensometer, accelerometer, etc. + + + + + + An empty string is the default representation of a null value for a + property (i.e. when the null value representation is not explicitly defined). This + value defines a value to be interpreted as null for this property in the dataValues + block. The reason attribute can be used to define the reason for the null value, + (eg. witheld). This can be customized with an other: qualifier (eg. other:below + detection limit) or reference a URI for a more complete definition. + + + + + If the property should be interpreted in a particular context (eg. + value is only valid for range of overburden pressures, etc.), then the context of + the property is described here. + + + + + Fraction of total sample analyzed (from enumerated list) + + + + + + A description of corrections used to obtain the reported result. + Commonly used to report N-values from SPT tests, or to describe any other + adjustments made to the reported data. Can come from a controlled + list. + + + + + The method by which the property value is obtained. From an enumerated + list. + + + + + diggs:Equipment + A property element that supports a value by reference only. The target + value is indicated in the appinfo element. + A reference to the source tool, or sensor, of a piece of equipment, + used to measure this property, if applicable. Generally used for well log,downhole + logging procedures, or monitoring equipment. + + + + + Identifies the detection limits for this property in the UOM for this property + + + + + True or false, indicates whether the value of this property can be + reported outside of the context of transmission via an xml instance. + + + + + + Used for well logging procedures, to define the state or status of the + data described by the well log curve. From an enumerated list. + + + + + + The + index order of this property within a tuple in the associated dataValues block (eg. + column order). + + + + + + + + + + + + + + + + + + + + + + + The structural condition of the specimen being tested, defined by the following controlled terms: +1) intact - specimen prepared without disturbance from an "undisturbed" sample (eg. thin-walled sampler); +2) disturbed - specimen prepared from a disturbed sample (eg. thick walled sampler; +3) remolded - specimen prepared from a failed or otherwise disturbed intact specimen; +4) reconstituted - speciment prepared to a predetermined water content and density + + + + + A description of the physical sample used for analysis following + preparation. For example, if a procedure requires a collected sample to be screened + such that the procedure operates on a specific size fraction of an overall soil + sample, this description could be used to describe the size fraction(s) used in the + prepared sample for analysis. However, if a more detailed and quantitative breakdown + of size fractions is needed, the retainedSizeFraction property within the specific + test procedure should be used to detail this information. + + + + + Size fraction from which test portion was obtained. + + + + + The weight of the specimen prior to drying + + + + + The weight of the sample following drying. + + + + + The shape of the specimen being tested, defined by the following controlled terms: +1) cylinder; +2) cube +3) cuboid - a square cylinder or cube with uneven sides disturbed intact specimen; +4) sphere + + + + + The vertical dimension of the specimen + + + + + The vertical dimension of the specimen + + + + + + For cylindrical specimens, a measure of the cylinder's + diameter + + + + + + A measure of one of the cross-sectional, or horizontal, dimensions + of the prepared sample. + + + + + A measure of the other of the cross-sectional, or horizontal, + dimensions of the prepared sample + + + + + + + The vertical dimension of the specimen + + + + + + + + + + + + + An object that describes the procedure(s) used to prepare a sample for a + particular test. It can optionally reference a sample (if this preparation procedure occurs + on a specific sample as part of another test procedure that uses more than one sample. The + gml:description field is used to carry the description of the preparation + procedure. + + + + + + + + + + A component of a sensor that measures one specific property (measurand), optionally along a single geometric axis + + + + + + + + + The location that the detector measures (eg response zone of the detector) + + + + + Contains the code value of the property being measured. Codespace must + be defined and the value should occur within a dictionary + + + + + + Compass bearing direction (relative to true north) defining the measurement axis direction (for directional measurements, eg. component of an extensometer, accelerometer, etc.) + + + + + Inclination of measurement axis (measured positively down from horizontal); used for directional measurements, eg. extensometer, accelerometer, etc. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The constraint defines a condition under which the limit applies + + + + + + + + + + + + + + + + An enumeration of various parameters upon which the property result may be + qualified + + + + + + + + + + + + + + + + + + + + + + + + + + + + + This will typically be used to record environmental parameters, or + event-specific parameters that are not tightly bound to either the earth materials + for which properties are being estimated, or the procedure. Parameters that are + tightly bound to the procedure should be encoded within the procedure + object. + + + + + + + + + + + + + + Identifies the reference point location for the sensor. This may be the top of casing for a tape used to detect water level or it could be a location within the response zone itself. + + + + + + + + + + + + + + + + + + + + A controlled list that indicates the target being investigated by this feature: + +Deep Foundation - investigation of deep foundation elements + +Earthworks - earth materials excavated and/or emplaced by engineering activity + +Ground Water - hydrology and chemistry of ground water; + +Indoor Atmosphere - meteorology and chemistry of air in indoor spaces + +Natural Ground - earth materials sampled in natural or undisturbed state; + +Outdoor Atmosphere - meteorology and chemistry of air in outdoor spaces + +Surface Water - hydrology and chemistry of surface water; + + + + + + + + + + + + + + + + + + + + + + + An act ("event"), whose results are estimates of the value of a property of the + investigation target, measured at a time instant or within a time interval, and at a + location or series of locations, derived from a test procedure. + + + + + + + + + + + + + + + + + + + + + + + Identifies the location of the response zone within the sampling feature that is being monitored. For example, for a water level measurement, the location would be the depth interval in the well where perforations are located (or where water enters the well) + + + + + A property that contains the information about what properties are + being measured, the results of the measurement, and the associated locations that + the measurement results relate to. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + A text string to provide information about the status of the object to + be used to track QA/QC controls, review or release status, etc. The values used are + intended to come from a controlled list of terms maintained by an + organization. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + A text string to provide information about the status of the object to + be used to track QA/QC controls, review or release status, etc. The values used are + intended to come from a controlled list of terms maintained by an + organization. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Short integer data value. + + + + + + + + + + This is the property that contains the Grading object(s). It is needed to satisfy the GML object-property rule when Grading is used as an element in another test. + + + + + + + + + + + + + + + The smallest grain size in the sample fraction used for this procedure + + + + + The largest grain size in the sample fraction used for this procedure + + + + + The fraction of the total sample used for the procedure (eg. fraction of the total sample represented by the size fraction used for the procedure + + + + + + + + + The range of grain sizes used for this test procedure; expressed as minimum grain size (for a sample with grain sizes above a certain size), or maximum grain size (for a sample with grain sizes below a certain). Both minimumGrainSize and maximumGrainSize may be populated to represent a sample with grain sizes between the two specified. + + + + + A sampling feature that is an installation within a borehole, used for + observing, withdrawing, or injecting fluids. Although wells are discrete sampling features + in their own right, they are installed within boreholes, and should reference a borehole + feature within the parentBorehole property, if the associated borehole feature is + instantiated. Multiple wells within a borehole should be contained within a group feature + and referenced in the groups property. + + + + + + + + + diggs:Borehole + A reference to the Borehole feature within which this well is + installed + + + + + The measured depth to the bottom of the well, measured in the well's + linear referencing system. + + + + + A description of the purpose for installing the hole (eg. ground water + withdrawal, observation, etc.). Intended to come from a controlled + list. + + + + + If a production or extraction well, a code or description of the + purpose for the fluid (eg. public supply, municipal, etc.) + + + + + The type of material used for the sanitary or surface seal (eg. + bentonite, grout, etc.) + + + + + Depth to the base of the sanitary seal + + + + + Description of how the well is finished (eg. gravel pack with + perforations, open end, sand point, etc.) + + + + + Description of the method used to develop the well after initial + construction (eg. compressed air, surged, etc.) + + + + + Time required for initial development + + + + + Description of any special procedures employed upon initial development + of well. + + + + + Information on the occurrence and activities involved in well + maintenance and servicing. + + + + + Information on the occurrence and procedures performed upon abandoning + the well + + + + + Information on the well casing installed. + + + + + Information on the location and type of well openings (perforations) + installed to allow fluid communication between the well and adjacent earth + material + + + + + + + + + + + + + + + + + + + + + + + + + The depth interval in which the well openings occur. Recorded in a + linear reference system for the well. + + + + + The depth interval in which the filter pack surrounding the well screen + or well openings occur. + + + + + + + + The type of well screen or perforation (eg. wire-wound screen, louvered + or shuttered, perforated casing, etc.) + + + + + The type of material that the well screen or perforation interval is + composed of. + + + + + + + + + + + + + + A wall of a trench or pit dug into the ground and represented by a planar + surface. + + + + + + + + + Description of shoring equipment and method used for the + trench. + + + + + A description of the purpose for excavating the trench (eg. + exploratory). Intended to come from a controlled list. + + + + + Information on construction of the trench backfill covering the trench + wall exposure. + + + + + Information regarding construction of the pit over different depth + intervals + + + + + Information on construction of the trench with time + + + + + + + + + A sampling feature feature that is created by a measurement activity through insertion of a probe into the ground. + + + + + + + + + The period of time when the hole is constructed. This should include the entire time the drill rig is on site. + + + + + The measured depth to the bottom of the hole, measured in a hole's + linear referencing system. + + + + + A description of the purpose for the sounding. Intended to come from a controlled list (eg. CPT, Flat Dilatometer, etc). + + + + + Information on construction of the backfill after + the sounding is made. + + + + + Information on the borehole casing installed following or during the sounding + + + + + Information regarding construction of the sounding over different depth + intervals + + + + + Information on sounding construction events with time. + + + + + + + + + A generic linear sampling feature that extends along the surface of an + investigation target; used for such features as transects, measured sections, + etc. + + + + + + + + + The period of time when during which the transect is run. + + + + + The total length of the transect, measured in the transect's + linear referencing system. + + + + + A description of the purpose for running the transect. Intended to come from a controlled + list. + + + + + + + + + + + + + + The location within the sampling feature that corresponds to the + particular construction method being referenced here. If omitted, it is assumed that + the procedures specified apply to the entire extent of the sampling + feature + + + + + The period of time during which the construction event is occurring + + + + + Uncontrolled string describing stability conditions of the trench during this interval + + + + + + diggs:Specification + A property element that supports a value by reference only. The + target value is indicated in the appinfo element. + + + + + + + + A property element that supports a value by reference only. The + target value is indicated in the appinfo element. + diggs:BusinessAssociate + + + + + + + + + + + + + +
diff --git a/example/testinstance20b.xml b/example/testinstance20b.xml new file mode 100644 index 00000000..0f1aa0f8 --- /dev/null +++ b/example/testinstance20b.xml @@ -0,0 +1,5581 @@ + + + + + + + + 2010-01-01 + 2009-01-01 + + + + GINT v.8 + + + + + + + + + + Test Project + + + + This could be a virtual project that has no relevance outside of this + instance + + + + + + + + + + + + + + Long Beach - Webster + LB_Webster + 334904118130301 + 004S013W23D003S + 004S013W23D004S + 334904118130302 + 004S013W23D005S + 334904118130303 + 004S013W23D006S + 334904118130304 + 004S013W23D007S + 334904118130305 + LWEB + Long Beach-3 + + urn:diggs:def:fi:USGS:LB_Webster + + + drilling_company + A-1 Drillers + + + + + geologist + + + + Natural Ground + + + + + + + + 387316.665116977 3742645.12297961 7.81507 + + + + + GPS + 5 + + + + + 387316.665116977 3742645.12297961 7.81507 387316.665116977 3742645.12297961 + -420.124129847717 + + + + + urn:diggs:def:fi:DIGGSINC:sr123 + + + + chainage + absolute + m + + + + + GPS + 5 + + + + + driller + 1 + + + + + 427.9392 + Multi-port Monitoring Well + + + + + 2008-01-01 + 5 + + + + + + + 5 10 + + + bentonite + + + + + + + mud rotary + CM-1 Shaker Table + + + + + + 2010-10-10 + + + Rig status + Pump blew a gasket + + + + + 15 + + + + + + + 6 + + + + + 2009-01-01 + + + 8 + + + + + + + + + Standpipe Piezometer + Long Beach - Webster + LB_Webster + 334904118130301 + 004S013W23D003S + urn:diggs:def:fi:USGS:LB_Webster1 + Natural Ground + + + + 387316.665116977 3742645.12297961 7.81507 + + + + + GPS + 5 + + + + + 387316.665116977 3742645.12297961 7.81507 387316.665116977 3742645.12297961 + -100 + + + + + urn:diggs:def:fi:DIGGSINC:srw123 + + + + chainage + absolute + m + + + + + GPS + 5 + + + + + driller + 1 + + + + + + 107.9392 + Groundwater Observation Well + + + 2 + PVC + + + + + + + 90 100 + + + + + + + + + My trench + urn:diggs:def:fi:USGS:usgs_a22 + Natural Ground + + + + + 387516.665116977 3742645.12297961 5 + + + + + 387516.665116977 3742645.12297961 5 387546.665116977 3742685.12297961 + 5 + + + + + + + + 0 0 50 0 50 10 0 10 0 0 + + + + + + + urn:diggs:def:fi:DIGGSINC:lsrs002 + + + + + 0 0 -1 + + + + GPS + 5 + + + + + tape + 1 + + + + + + + backhoe + + + Backhoe was brand new and worked like a charm + + + + + + + + + Sounding 1 + Natural Ground + + + + 387416.665116977 3742645.12297961 6 + + + + + 387416.665116977 3742645.12297961 6 387416.665116977 3742645.12297961 + 1.44 + + + + + urn:diggs:def:fi:DIGGSINC:cptsr1 + + + + chainage + absolute + m + + + + + 5.44 + + + + + Hand dug top 0.5 foot before conducting the sounding + + + + + 0 0.15 + + + + + + + CPT Sounding + + + 0.15 5.44 + + + Hogentogler 20-ton rig + + + + + + + + + + Natural Ground + + + + + 5 7 + + + collect + + + + + + 5 6 + + + + + + + 2010-01-01 + + + + + cloudy day + 57 + + + + + + + + + Laboratory test standard + urn:diggs:def:fi:USGS:usgs_zyx + Natural Ground + + test + + + + + + + + 2010-01-01 + + + + + + + + + Natural Ground + + + + + 30 + + + collect + + + + + + 30 + + + + + + + 2010-01-01 + + + grab sample + + + + + + + + AAStd-321 + + + + standard + + + + + Sample A-1 + urn:diggs:def:fi:USGS:usgs_s123 + + + + + + soil sample + environmental testing + poor + soil + water + + + A really nice core sample + 9 + 156 + 102 + + + + + fine sand + SP + + + + + 0.12 + fine sand + + + + + + + elongated + poorly graded + + + + + silt/silt laminae + rare + 3 + scattered + + + + + + + Transferred to laboratory + + ReallyGood Laboratories + 2008-09-09 + 2008-09-10 + cooler + nitrogen + + + + + + + GS-1 + + + + + + Brown silt, elastic, micaceous + ML + + + + + + + + + + Unified Soil Classification ASTM D2487 - 11 + + + + + 0 5 + + + true + + + silty sand with clay; brown, loose, moist + SM + + + loose + varved + medium + soft + medium + damp + none + subrounded + elongated + fine sand to silt + well-sorted + medium + violent + stratified + medium + + + + + mica + 10 + + + + + + + + + clay + CL + + + 20 + + + + + 10.2 + 230 + sharp + depositional + wavy + + + + + + + + + 5 10 + + + true + + + SP + coarse sand + + + + + 1 + + + + + + + well-sorted + non-woody + + + + + + + + + + + + + Munsell Color + + + + + 0 10 + + + + + brown + 10YR4/3 + + + + + + + + + urn:diggs:def:fi:USGS:usgs_lst1 + + + Faults in trench wall + + + + + + 5 6 3 4 2 1 + + + + + normal fault + + + + + + + + + + + Fractures + + + + + 0 10 + + + + + 80 + 300 + clay + + + + + 20 + + + + + + + + + Lithology in trench wall + + + Unified Soil Classification + + + + + + + + + 0 2 10 2.5 20 4 30 3 40 2 50 1 + + + + + + + + + + 0 5 10 5.5 20 7 30 6 40 5 50 4 + + + + + + + + + + + + + + 50 1 50 4 + + + + + + + + + + + + 0 5 0 2 + + + + + + + + + + + coarse sand + SP + + + + + + + + + + + + + + + + + + 0 6 10 6.5 20 8 30 7 40 6 50 5 + + + + + + + + + + + + + + 0 5 0 6 + + + + + + + + 50 5 50 4 + + + + + + + + + true + true + + + grey sandy silt + ML + + + + + + + + + + + bedding + + + + + 0 30 + + + + + 300 + 10 + + + + + + + + + 30 400 + + + + + 310 + 30 + + + + + + + + + + + chronostratigraphic + + + + + 0 30 + + + Holocene + + + + + + + 30 400 + + + Pleistocene + + + + + + + + + Atterberg Limits Test + Natural Ground + + + + + + 2015-04-23 + + + + + + + 30 + + + + + + + + + Liquid Limit + integer + liquid_limit_oven_dried + % + measured + true + + + Plastic Limit + string + plastic_limit + % + measured + true + + + Plasticity Index + string + p + % + measured + true + + + Shrinkage Limit + integer + shrinkage_limit + % + measured + true + + + + + 37 27 18 10 + + + + + + + ASTM Standard D4318 + ASTM Standard D427-04 + + + Sample passing 425 micron screen + + + true + + + true + 20 + 40 + + + + + true + 40 + 18 + + + + + true + 27 + 25 + + + + + 17 + + + + + 18 + + + + + 19 + + + + + 30 + 30 + 20 + 90 + + + + + + + + + + Fall Cone LL Test instead of Casagrande Test + Natural Ground + + + + + + 2015-04-23 + + + + + + + 18 + + + + + + + + + Liquid Limit + string + liquid_limit + % + measured + true + + + + + 37 + + + + + + + JGS standard 0142-2000 + + + + + 1 + Initial Moisture Adjustment Time + 2015-08-17T11:05:24 + + + + + 2 + Time at End of Curing + 2015-08-17T14:05:24 + + + + + false + wet + 12 + Dry (air) + true + + + 30 + 40 + + + + + 10 + 18 + + + + + 25 + 25 + + + + + + + + + + Lab Density + Natural Ground + + + + + + 2004-11-12 + + + + + 2005-01-16 + + + + + + + 5 6 + + + + + + + + + Bulk Density + double + bulk_density + g/cm3 + measured + + + + + 2.07 + + + + + + + ASTM D7263-09 + + + + + + + + Lab Particle Size + Natural Ground + + + + + + 2004-11-12 + + + + + 2005-01-16 + + + + + + + 5 6 + + + + + + + + + Percent Fines + double + percent_fines + % + + + Coef. of Uniformity + double + coef_uniformity + + + Median Grainsize + double + d50 + mm + + + + + 18.5,1.39,2.5 + + + + + + + ASTM D422-63(2002)- + + + 4 + 84 + + + + + 2 + 56 + + + + + 0.5 + 10 + + + + + + + + + + CPT Sounding + Natural Ground + + + + + + + 0.010 0.020 0.030 0.040 0.050 0.060 0.070 0.080 0.090 0.100 0.110 0.120 + 0.130 0.140 0.150 0.160 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+ + Unit Weight + double + unit_weight + lbm/ft3 + + + + + 22.3,115 -999,109 27.4,-999 28.4,120 17.8,118.9 + + + + + + + + + + + Water Level Monitoring LB Webster #1 + Ground Water + + + + + + + 90 100 + + + + + + + + + 1999-05-03T11:45:00 + + + + + 1999-05-04T12:00:00 + + + + + 1999-05-05T11:45:00 + + + + + 1999-05-06T11:30:00 + + + + + 1999-05-07T11:00:00 + + + + + + + + + + + Depth to Water + double + water_level_depth + m + -999 + measured + + + Comments + string + comment + -999 + + + + + 5.62,"Initial Reading" 5.62,-999 5.60,-999 5.57,-999 5.57,-999 + + + + + Measuring Tape + + + + + + + Borehole Magnetic Extensometer + + + Owner + ACME Gasworks + + + + + Monitoring Contractor + ACME Monitoring Ltd. + + + Natural Ground + + + + + + + 2 + + + + + + + + + 1999-05-03T11:45:00 + + + + + 1999-05-04T12:00:00 + + + + + 1999-05-05T11:45:00 + + + + + 1999-05-06T11:30:00 + + + + + 1999-05-07T11:00:00 + + + + + + + + + + + AnchorDisplacement + double + displacement + mm + 0 + 90 + + + + + + 0 0 0 0.8 2.9 + + + + + + + + + + + + 4 + + + + + + + + + 1999-05-03T11:45:00 + + + + + 1999-05-04T12:00:00 + + + + + 1999-05-05T11:45:00 + + + + + 1999-05-06T11:30:00 + + + + + 1999-05-07T11:00:00 + + + + + + + + + + + AnchorDisplacement + double + displacement + mm + 0 + 90 + + + + + + 0 0 0.5 1.8 3.9 + + + + + + + + + + + + 6 + + + + + + + + + 1999-05-03T11:45:00 + + + + + 1999-05-04T12:00:00 + + + + + 1999-05-05T11:45:00 + + + + + 1999-05-06T11:30:00 + + + + + 1999-05-07T11:00:00 + + + + + + + + + + + AnchorDisplacement + double + displacement + mm + 0 + 90 + + + + + + 0 0 0.8 2.1 4.2 + + + + + + + + + + + + 8 + + + + + + + + + 1999-05-03T11:45:00 + + + + + 1999-05-04T12:00:00 + + + + + 1999-05-05T11:45:00 + + + + + 1999-05-06T11:30:00 + + + + + 1999-05-07T11:00:00 + + + + + + + + + + + AnchorDisplacement + double + displacement + mm + 0 + 90 + + + + + + 0 0 1 2.3 4.4 + + + + + + + + + + + + + Water Quality Constituents + Natural Ground + + + + + + + 2015-04-23 + + + + + + + 30 50 + + + + + + + + + Total Dissolved Solids + string + 70301 + mg/L + Dissolved + + + reporting + 10 + + + + + method + 0.1 + + + + + Total Dissolved Iron + string + 70410 + mg/L + Dissolved + + + reporting + 5 + + + + + method + 0.1 + + + + + + + <10,10 50,80 + + + + + + + Dissolved solids, water, filtered, sum of constituents, milligrams per liter; Iron, water, unfiltered, milligrams per liter + + + + + + + + Shear Wave Velocity Profile derived from from downhole interval shear slowness + Natural Ground + + + + + + + + + + 0 50 + + + + + 50 200 + + + + + 200 417 + + + + + + + + + + + Shear Wave Velocity + double + shear_velocity + m/s + assigned + + + + + 350 600 660 + + + + + + + Shear wave data for each interval assigned by linear regression of travel time slowness derived from Test id #gl1" + + + + + + + + + + Bench Locality + urn:diggs:def:fi:USGS:usgs_g1 + + + + + + + + + http://www.usgs.gov/files/newfile.pdf + Adobe PDF + 2012-07-14 + + + + + + + Joe Blow + + + + + Joe Geologist + + + + + + + Fielding BH-1 Rig + drill_rig + 100A + + + + + + Christiansen 94 mm core barrel + core_sampler + + + + + + PureTec Deionizing System + + + + + + Hogentogler PiezoCone + piezocone + 1234 + + + Tip resistance transducer + tip_resistance + 90 + + + + + + + + ABC Pressure Transducer + piezocone + 1234 + + + pressure transducer + water_level_elevation + + + + + + + + Borehole (magnetic) extensometer + + + Installer + ACME Monitoring Ltd. + + + + + 0 + + + + + 1999-04-15 + + + + + + + 2 + + + displacement + 0 + 90 + + + + + + + 4 + + + displacement + 0 + 90 + + + + + + + 6 + + + displacement + 0 + 90 + + + + + + + 8 + + + displacement + 0 + 90 + + + + + + + + 95mm wireline core + Sample extracted via a 5' push with bit rotation at 60 rpm + + + + + Deionized water + Deionized water produced by ion-exchange method + + + + diff --git a/glrProfile_diggs.xsd b/glrProfile_diggs.xsd new file mode 100644 index 00000000..d698f206 --- /dev/null +++ b/glrProfile_diggs.xsd @@ -0,0 +1,601 @@ + + + + GML 3.3 profile for DIGGS including: Basic Linear Referencing + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Informative values from ISO 19148 Annex C + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Normative values from ISO 19148 + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + diff --git a/glrovProfile_diggs.xsd b/glrovProfile_diggs.xsd new file mode 100644 index 00000000..ce0439bd --- /dev/null +++ b/glrovProfile_diggs.xsd @@ -0,0 +1,63 @@ + + + + GML 3.3 profile for DIGGS including: Vector Offset Linear Referencing + + + + + + + + + + + + + + + + + + + + diff --git a/gml3.2Profile_diggs.xsd b/gml3.2Profile_diggs.xsd new file mode 100644 index 00000000..5023e511 --- /dev/null +++ b/gml3.2Profile_diggs.xsd @@ -0,0 +1,2169 @@ + + + + GML Subset schema for + ,PointPropertyType,CodeType,EngineeringDatum,CoordinateSystemAxis,CurvePropertyType,AbstractGML,AbstractFeature,MultiGeometryPropertyType,MultiPointPropertyType,AssociationAttributeGroup,ReferenceType,EngineeringDatumType,CoordinateSystemAxisType,AbstractGMLType,AbstractFeatureCollectionType,AbstractFeatureType, + written by gmlSubset.xslt. + + + + + + + + A property that has a point as its value domain may either be an appropriate + geometry element encapsulated in an element of this type or an XLink reference to a remote + geometry element (where remote includes geometry elements located elsewhere in the same + document). Either the reference or the contained element shall be given, but neither both + nor none. + + + + + + + + + + + A Point is defined by a single coordinate tuple. The direct position of a point + is specified by the pos element which is of type DirectPositionType. + + + + + + + + + + + + + + + + + + gml:AbstractGeometricPrimitiveType is the abstract root type of the geometric + primitives. A geometric primitive is a geometric object that is not decomposed further into + other primitives in the system. All primitives are oriented in the direction implied by the + sequence of their coordinate tuples. + + + + + + + + + All geometry elements are derived directly or indirectly from this abstract + supertype. A geometry element may have an identifying attribute (gml:id), one or more names + (elements identifier and name) and a description (elements description and + descriptionReference) . It may be associated with a spatial reference system (attribute + group gml:SRSReferenceGroup). The following rules shall be adhered to: - Every geometry type + shall derive from this abstract type. - Every geometry element (i.e. an element of a + geometry type) shall be directly or indirectly in the substitution group of + AbstractGeometry. + + + + + + + + + + + + + + + + + + + + + + + + + + + Database handle for the object. It is of XML type ID, so is constrained to be + unique in the XML document within which it occurs. An external identifier for the object in + the form of a URI may be constructed using standard XML and XPointer methods. This is done + by concatenating the URI for the document, a fragment separator, and the value of the id + attribute. + + + + + + The attribute group SRSReferenceGroup is an optional reference to the CRS used + by this geometry, with optional additional information to simplify the processing of the + coordinates when a more complete definition of the CRS is not needed. In general the + attribute srsName points to a CRS instance of gml:AbstractCoordinateReferenceSystem. For + well-known references it is not required that the CRS description exists at the location the + URI points to. If no srsName attribute is given, the CRS shall be specified as part of the + larger context this geometry element is part of. + + + + + + + + + The attributes uomLabels and axisLabels, defined in the SRSInformationGroup + attribute group, are optional additional and redundant information for a CRS to simplify the + processing of the coordinate values when a more complete definition of the CRS is not + needed. This information shall be the same as included in the complete definition of the + CRS, referenced by the srsName attribute. When the srsName attribute is included, either + both or neither of the axisLabels and uomLabels attributes shall be included. When the + srsName attribute is omitted, both of these attributes shall be omitted. The attribute + axisLabels is an ordered list of labels for all the axes of this CRS. The gml:axisAbbrev + value should be used for these axis labels, after spaces and forbidden characters are + removed. When the srsName attribute is included, this attribute is optional. When the + srsName attribute is omitted, this attribute shall also be omitted. The attribute uomLabels + is an ordered list of unit of measure (uom) labels for all the axes of this CRS. The value + of the string in the gml:catalogSymbol should be used for this uom labels, after spaces and + forbidden characters are removed. When the axisLabels attribute is included, this attribute + shall also be included. When the axisLabels attribute is omitted, this attribute shall also + be omitted. + + + + + + + + A type for a list of values of the respective simple type. + + + + + + + + + Direct position instances hold the coordinates for a position within some + coordinate reference system (CRS). Since direct positions, as data types, will often be + included in larger objects (such as geometry elements) that have references to CRS, the + srsName attribute will in general be missing, if this particular direct position is included + in a larger element with such a reference to a CRS. In this case, the CRS is implicitly + assumed to take on the value of the containing object's CRS. if no srsName attribute is + given, the CRS shall be specified as part of the larger context this geometry element is + part of, typically a geometric object like a point, curve, etc. + + + + + + + + + + + A type for a list of values of the respective simple type. + + + + + + + + + + The AbstractGeometricPrimitive element is the abstract head of the substitution + group for all (pre- and user-defined) geometric primitives. + + + + + + The AbstractGeometry element is the abstract head of the substitution group for + all geometry elements of GML. This includes pre-defined and user-defined geometry elements. + Any geometry element shall be a direct or indirect extension/restriction of + AbstractGeometryType and shall be directly or indirectly in the substitution group of + AbstractGeometry. + + + + + + The abstract element gml:AbstractGML is “any GML object having identity”. It + acts as the head of an XML Schema substitution group, which may include any element which is + a GML feature, or other object, with identity. This is used as a variable in content models + in GML core and application schemas. It is effectively an abstract superclass for all GML + objects. + + + + + + This element has no type defined, and is therefore implicitly (according to the + rules of W3C XML Schema) an XML Schema anyType. It is used as the head of an XML Schema + substitution group which unifies complex content and certain simple content elements used + for datatypes in GML, including the gml:AbstractGML substitution group. + + + + + + XLink components are the standard method to support hypertext referencing in + XML. An XML Schema attribute group, gml:AssociationAttributeGroup, is provided to support + the use of Xlinks as the method for indicating the value of a property by reference in a + uniform manner in GML. + + + + + + + + gml:NilReasonType defines a content model that allows recording of an + explanation for a void value or other exception. gml:NilReasonType is a union of the + following enumerated values: - inapplicable there is no value - missing the correct value is + not readily available to the sender of this data. Furthermore, a correct value may not exist + - template the value will be available later - unknown the correct value is not known to, + and not computable by, the sender of this data. However, a correct value probably exists - + withheld the value is not divulged - other:text other brief explanation, where text is a + string of two or more characters with no included spaces and - anyURI which should refer to + a resource which describes the reason for the exception A particular community may choose to + assign more detailed semantics to the standard values provided. Alternatively, the URI + method enables a specific or more complete explanation for the absence of a value to be + provided elsewhere and indicated by-reference in an instance document. gml:NilReasonType is + used as a member of a union in a number of simple content types where it is necessary to + permit a value from the NilReasonType union as an alternative to the primary + type. + + + + + + + + + + + + + + + + + + + + + + + + + + + Encoding a GML property inline vs. by-reference shall not imply anything about + the “ownership” of the contained or referenced GML Object, i.e. the encoding style shall not + imply any “deep-copy” or “deep-delete” semantics. To express ownership over the contained or + referenced GML Object, the gml:OwnershipAttributeGroup attribute group may be added to + object-valued property elements. If the attribute group is not part of the content model of + such a property element, then the value may not be “owned”. When the value of the owns + attribute is "true", the existence of inline or referenced object(s) depends upon the + existence of the parent object. + + + + + + + gml:CodeType is a generalized type to be used for a term, keyword or name. It + adds a XML attribute codeSpace to a term, where the value of the codeSpace attribute (if + present) shall indicate a dictionary, thesaurus, classification scheme, authority, or + pattern for the term. + + + + + + + + + + + gml:EngineeringDatum defines the origin of an engineering coordinate reference + system, and is used in a region around that origin. This origin may be fixed with respect to + the earth (such as a defined point at a construction site), or be a defined point on a + moving vehicle (such as on a ship or satellite). + + + + + + + + + + + + + + + + + + + + + + + + + gml:IdentifiedObjectType provides identification properties of a CRS-related + object. In gml:DefinitionType, the gml:identifier element shall be the primary name by which + this object is identified, encoding the "name" attribute in the UML model. Zero or more of + the gml:name elements can be an unordered set of "identifiers", encoding the "identifier" + attribute in the UML model. Each of these gml:name elements can reference elsewhere the + object's defining information or be an identifier by which this object can be referenced. + Zero or more other gml:name elements can be an unordered set of "alias" alternative names by + which this CRS related object is identified, encoding the "alias" attributes in the UML + model. An object may have several aliases, typically used in different contexts. The context + for an alias is indicated by the value of its (optional) codeSpace attribute. Any needed + version information shall be included in the codeSpace attribute of a gml:identifier and + gml:name elements. In this use, the gml:remarks element in the gml:DefinitionType shall + contain comments on or information about this object, including data source + information. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value of this property is a text description of the object. gml:description + uses gml:StringOrRefType as its content model, so it may contain a simple text string + content, or carry a reference to an external description. The use of gml:description to + reference an external description has been deprecated and replaced by the + gml:descriptionReference property. + + + + + + deprecated + + + + + + + + + + + The value of this property is a remote text description of the object. The + xlink:href attribute of the gml:descriptionReference property references the external + description. + + + + + + gml:ReferenceType is intended to be used in application schemas directly, if a + property element shall use a “by-reference only” encoding. + + + + + + + + + Often, a special identifier is assigned to an object by the maintaining + authority with the intention that it is used in references to the object For such cases, the + codeSpace shall be provided. That identifier is usually unique either globally or within an + application domain. gml:identifier is a pre-defined property for such + identifiers. + + + + + + + gml:CodeWithAuthorityType requires that the codeSpace attribute is provided in + an instance. + + + + + + + + + + + + The gml:name property provides a label or identifier for the object, commonly a + descriptive name. An object may have several names, typically assigned by different + authorities. gml:name uses the gml:CodeType content model. The authority for a name is + indicated by the value of its (optional) codeSpace attribute. The name may or may not be + unique, as determined by the rules of the organization responsible for the codeSpace. In + common usage there will be one name per authority, so a processing application may select + the name from its preferred codeSpace. + + + + + + + + The gml:domainOfValidity property implements an association role to an + EX_Extent object as encoded in ISO/TS 19139, either referencing or containing the definition + of that extent. + + + + + + + + + + The gml:scope property provides a description of the usage, or limitations of + usage, for which this CRS-related object is valid. If unknown, enter "not + known". + + + + + + gml:anchorDefinition is a description, possibly including coordinates, of the + definition used to anchor the datum to the Earth. Also known as the "origin", especially for + engineering and image datums. The codeSpace attribute may be used to reference a source of + more detailed on this point or surface, or on a set of such descriptions. - For a geodetic + datum, this point is also known as the fundamental point, which is traditionally the point + where the relationship between geoid and ellipsoid is defined. In some cases, the + "fundamental point" may consist of a number of points. In those cases, the parameters + defining the geoid/ellipsoid relationship have been averaged for these points, and the + averages adopted as the datum definition. - For an engineering datum, the anchor definition + may be a physical point, or it may be a point with defined coordinates in another CRS.may - + For an image datum, the anchor definition is usually either the centre of the image or the + corner of the image. - For a temporal datum, this attribute is not defined. Instead of the + anchor definition, a temporal datum carries a separate time origin of type + DateTime. + + + + + + gml:realizationEpoch is the time after which this datum definition is valid. + See ISO 19111 Table 32 for details. + + + + + + A gml:AbstractDatum specifies the relationship of a coordinate system to the + earth, thus creating a coordinate reference system. A datum uses a parameter or set of + parameters that determine the location of the origin of the coordinate reference system. + Each datum subtype may be associated with only specific types of coordinate systems. This + abstract complex type shall not be used, extended, or restricted, in a GML Application + Schema, to define a concrete subtype with a meaning equivalent to a concrete subtype + specified in this document. + + + + + + The basic gml:Definition element specifies a definition, which can be included + in or referenced by a dictionary. The content model for a generic definition is a derivation + from gml:AbstractGMLType. The gml:description property element shall hold the definition if + this can be captured in a simple text string, or the gml:descriptionReference property + element may carry a link to a description elsewhere. The gml:identifier element shall + provide one identifier identifying this definition. The identifier shall be unique within + the dictionaries using this definition. The gml:name elements shall provide zero or more + terms and synonyms for which this is the definition. The gml:remarks element shall be used + to hold additional textual information that is not conceptually part of the definition but + is useful in understanding the definition. + + + + + + gml:CoordinateSystemAxis is a definition of a coordinate system axis. + + + + + + + + + + + + + + + + The uom attribute provides an identifier of the unit of measure used for this coordinate system axis. The value of this coordinate in a coordinate tuple shall be recorded using this unit of measure, whenever those coordinates use a coordinate reference system that uses a coordinate system that uses this axis. + + + + + + + + + gml:axisAbbrev is the abbreviation used for this coordinate system axis; this + abbreviation is also used to identify the coordinates in the coordinate tuple. The codeSpace + attribute may reference a source of more information on a set of standardized abbreviations, + or on this abbreviation. + + + + + + gml:axisDirection is the direction of this coordinate system axis (or in the + case of Cartesian projected coordinates, the direction of this coordinate system axis at the + origin). Within any set of coordinate system axes, only one of each pair of terms may be + used. For earth-fixed CRSs, this direction is often approximate and intended to provide a + human interpretable meaning to the axis. When a geodetic datum is used, the precise + directions of the axes may therefore vary slightly from this approximate direction. The + codeSpace attribute shall reference a source of information specifying the values and + meanings of all the allowed string values for this property. + + + + + + The gml:minimumValue and gml:maximumValue properties allow the specification of + minimum and maximum value normally allowed for this axis, in the unit of measure for the + axis. For a continuous angular axis such as longitude, the values wrap-around at this value. + Also, values beyond this minimum/maximum can be used for specified purposes, such as in a + bounding box. A value of minus infinity shall be allowed for the gml:minimumValue element, a + value of plus infiniy for the gml:maximumValue element. If these elements are omitted, the + value is unspecified. + + + + + + The gml:minimumValue and gml:maximumValue properties allow the specification of + minimum and maximum value normally allowed for this axis, in the unit of measure for the + axis. For a continuous angular axis such as longitude, the values wrap-around at this value. + Also, values beyond this minimum/maximum can be used for specified purposes, such as in a + bounding box. A value of minus infinity shall be allowed for the gml:minimumValue element, a + value of plus infiniy for the gml:maximumValue element. If these elements are omitted, the + value is unspecified. + + + + + + gml:rangeMeaning describes the meaning of axis value range specified by + gml:minimumValue and gml:maximumValue. This element shall be omitted when both + gml:minimumValue and gml:maximumValue are omitted. This element should be included when + gml:minimumValue and/or gml:maximumValue are included. If this element is omitted when the + gml:minimumValue and/or gml:maximumValue are included, the meaning is unspecified. The + codeSpace attribute shall reference a source of information specifying the values and + meanings of all the allowed string values for this property. + + + + + + The simple type gml:UomIdentifer defines the syntax and value space of the unit + of measure identifier. + + + + + + + This type specifies a character string of length at least one, and restricted + such that it must not contain any of the following characters: “:” (colon), “ “ (space), + (newline), (carriage return), (tab). This allows values corresponding to familiar + abbreviations, such as “kg”, “m/s”, etc. It is recommended that the symbol be an identifier + for a unit of measure as specified in the “Unified Code of Units of Measure" (UCUM) + (http://aurora.regenstrief.org/UCUM). This provides a set of symbols and a grammar for + constructing identifiers for units of measure that are unique, and may be easily entered + with a keyboard supporting the limited character set known as 7-bit ASCII. ISO 2955 formerly + provided a specification with this scope, but was withdrawn in 2001. UCUM largely follows + ISO 2955 with modifications to remove ambiguities and other problems. + + + + + + + + + This type specifies a URI, restricted such that it must start with one of the + following sequences: “#”, “./”, “../”, or a string of characters followed by a “:”. These + patterns ensure that the most common URI forms are supported, including absolute and + relative URIs and URIs that are simple fragment identifiers, but prohibits certain forms of + relative URI that could be mistaken for unit of measure symbol . NOTE It is possible to + re-write such a relative URI to conform to the restriction (e.g. “./m/s”). In an instance + document, on elements of type gml:MeasureType the mandatory uom attribute shall carry a + value corresponding to either - a conventional unit of measure symbol, - a link to a + definition of a unit of measure that does not have a conventional symbol, or when it is + desired to indicate a precise or variant definition. + + + + + + + + + A property that has a curve as its value domain may either be an appropriate + geometry element encapsulated in an element of this type or an XLink reference to a remote + geometry element (where remote includes geometry elements located elsewhere in the same + document). Either the reference or the contained element shall be given, but neither both + nor none. + + + + + + + + + + + The AbstractCurve element is the abstract head of the substitution group for + all (continuous) curve elements. + + + + + + gml:AbstractCurveType is an abstraction of a curve to support the different + levels of complexity. The curve may always be viewed as a geometric primitive, i.e. is + continuous. + + + + + + + + + This abstract element serves as the head of a substitution group which may + contain any elements whose content model is derived from gml:AbstractFeatureType. This may + be used as a variable in the construction of content models. gml:AbstractFeature may be + thought of as “anything that is a GML feature” and may be used to define variables or + templates in which the value of a GML property is “any feature”. This occurs in particular + in a GML feature collection where the feature member properties contain one or multiple + copies of gml:AbstractFeature respectively. + + + + + + The basic feature model is given by the gml:AbstractFeatureType. The content + model for gml:AbstractFeatureType adds two specific properties suitable for geographic + features to the content model defined in gml:AbstractGMLType. The value of the gml:boundedBy + property describes an envelope that encloses the entire feature instance, and is primarily + useful for supporting rapid searching for features that occur in a particular location. The + value of the gml:location property describes the extent, position or relative location of + the feature. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + gml:MultiGeometry is a collection of one or more GML geometry objects of arbitrary type. + The members of the geometric aggregate may be specified either using the "standard" property (gml:geometryMember) or the array property (gml:geometryMembers). It is also valid to use both the "standard" and the array properties in the same collection. + + + + + This property element either references a geometry element via the XLink-attributes or contains the geometry element. + + + + + A geometric property may either be any geometry element encapsulated in an element of this type or an XLink reference to a remote geometry element (where remote includes geometry elements located elsewhere in the same or another document). Note that either the reference or the contained element shall be given, but not both or none. + If a feature has a property that takes a geometry element as its value, this is called a geometry property. A generic type for such a geometry property is GeometryPropertyType. + + + + + + + + + + This property element contains a list of geometry elements. The order of the elements is significant and shall be preserved when processing the array. + + + + + If a feature has a property which takes an array of geometry elements as its value, this is called a geometry array property. A generic type for such a geometry property is GeometryArrayPropertyType. + The elements are always contained inline in the array property, referencing geometry elements or arrays of geometry elements via XLinks is not supported. + + + + + + + + + A property that has a geometric aggregate as its value domain may either be an appropriate geometry element encapsulated in an element of this type or an XLink reference to a remote geometry element (where remote includes geometry elements located elsewhere in the same document). Either the reference or the contained element shall be given, but neither both nor none. + + + + + + + + + + + gml:AbstractGeometricAggregate is the abstract head of the substitution group + for all geometric aggregates. + + + + + + + + + + + + + + A GML Object Collection is any GML Object with a property element in its + content model whose content model is derived by extension from gml:AbstractMemberType. In + addition, the complex type describing the content model of the GML Object Collection may + also include a reference to the attribute group gml:AggregationAttributeGroup to provide + additional information about the semantics of the object collection. This information may be + used by applications to group GML objects, and optionally to order and index them. The + allowed values for the aggregationType attribute are defined by gml:AggregationType. See 8.4 + of ISO/IEC 11404:1996 for the meaning of the values in the enumeration. + + + + + + + + + + + + + + + + + + A property that has a collection of points as its value domain may either be an + appropriate geometry element encapsulated in an element of this type or an XLink reference + to a remote geometry element (where remote includes geometry elements located elsewhere in + the same document). Either the reference or the contained element shall be given, but + neither both nor none. + + + + + + + + + + + A gml:MultiPoint consists of one or more gml:Points. The members of the + geometric aggregate may be specified either using the "standard" property (gml:pointMember) + or the array property (gml:pointMembers). It is also valid to use both the "standard" and + the array properties in the same collection. + + + + + + + + + + + + + + + + + This property element either references a Point via the XLink-attributes or + contains the Point element. + + + + + + This property element contains a list of points. The order of the elements is + significant and shall be preserved when processing the array. + + + + + + gml:PointArrayPropertyType is a container for an array of points. The elements + are always contained inline in the array property, referencing geometry elements or arrays + of geometry elements via XLinks is not supported. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + A container for an array of curves. The elements are always contained in the array property, referencing geometry elements or arrays of geometry elements via XLinks is not supported. + + + + + + + + + A gml:MultiCurve is defined by one or more gml:AbstractCurves. + The members of the geometric aggregate may be specified either using the "standard" property (gml:curveMember) or the array property (gml:curveMembers). It is also valid to use both the "standard" and the array properties in the same collection. + + + + + This property element contains a list of curves. The order of the elements is significant and shall be preserved when processing the array. + + + + + A property that has a collection of curves as its value domain may either be an appropriate geometry element encapsulated in an element of this type or an XLink reference to a remote geometry element (where remote includes geometry elements located elsewhere in the same document). Either the reference or the contained element shall be given, but neither both nor none. + + + + + + + + + + + + + + + + + + + + This property element either references a surface via the XLink-attributes or contains the surface element. A surface element is any element, which is substitutable for gml:AbstractSurface. + + + + + A property that has a surface as its value domain may either be an appropriate geometry element encapsulated in an element of this type or an XLink reference to a remote geometry element (where remote includes geometry elements located elsewhere in the same document). Either the reference or the contained element shall be given, but neither both nor none. + + + + + + + + + + A gml:MultiSurface is defined by one or more gml:AbstractSurfaces. + The members of the geometric aggregate may be specified either using the "standard" property (gml:surfaceMember) or the array property (gml:surfaceMembers). It is also valid to use both the "standard" and the array properties in the same collection. + + + + + This property element contains a list of surfaces. The order of the elements is significant and shall be preserved when processing the array. + + + + + A property that has a collection of surfaces as its value domain may either be an appropriate geometry element encapsulated in an element of this type or an XLink reference to a remote geometry element (where remote includes geometry elements located elsewhere in the same document). Either the reference or the contained element shall be given, but neither both nor none. + + + + + + + + + + gml:SurfaceArrayPropertyType is a container for an array of surfaces. The elements are always contained in the array property, referencing geometry elements or arrays of geometry elements via XLinks is not supported. + + + + + + + + + + + + + + + + + + + gml:AbstractSurfaceType is an abstraction of a surface to support the different levels of complexity. A surface is always a continuous region of a plane. + + + + + + + + The AbstractSurface element is the abstract head of the substitution group for all (continuous) surface elements. + + + + + + A Polygon is a special surface that is defined by a single surface patch (see D.3.6). The boundary of this patch is coplanar and the polygon uses planar interpolation in its interior. + The elements exterior and interior describe the surface boundary of the polygon. + + + + + A boundary of a surface consists of a number of rings. In the normal 2D case, one of these rings is distinguished as being the exterior boundary. In a general manifold this is not always possible, in which case all boundaries shall be listed as interior boundaries, and the exterior will be empty. + + + + + A boundary of a surface consists of a number of rings. The "interior" rings separate the surface / surface patch from the area enclosed by the rings. + + + + + + + + An abstraction of a ring to support surface boundaries of different complexity. + The AbstractRing element is the abstract head of the substituition group for all closed boundaries of a surface patch. + + + + + A property with the content model of gml:AbstractRingPropertyType encapsulates a ring to represent the surface boundary property of a surface. + + + + + + + + + + + + + + + + + + + + + + + + + posList instances (and other instances with the content model specified by DirectPositionListType) hold the coordinates for a sequence of direct positions within the same coordinate reference system (CRS). + if no srsName attribute is given, the CRS shall be specified as part of the larger context this geometry element is part of, typically a geometric object like a point, curve, etc. + The optional attribute count specifies the number of direct positions in the list. If the attribute count is present then the attribute srsDimension shall be present, too. + The number of entries in the list is equal to the product of the dimensionality of the coordinate reference system (i.e. it is a derived value of the coordinate reference system definition) and the number of direct positions. + + + + + + + + + + + + A LinearRing is defined by four or more coordinate tuples, with linear interpolation between them; the first and last coordinates shall be coincident. The number of direct positions in the list shall be at least four. + + + + + This property element either references a point via the XLink-attributes or contains the point element. pointProperty is the predefined property which may be used by GML Application Schemas whenever a GML feature has a property with a value that is substitutable for Point. + + + + + gml:EngineeringCRS is a contextually local coordinate reference system which can be divided into two broad categories: + - earth-fixed systems applied to engineering activities on or near the surface of the earth; + - CRSs on moving platforms such as road vehicles, vessels, aircraft, or spacecraft, see ISO 19111 8.3. + + + + + + + + + + + + + + + + + + + + + + + + gml:engineeringDatum is an association role to the engineering datum used by this CRS. + + + + + gml:EngineeringDatumPropertyType is a property type for association roles to an engineering datum, either referencing or containing the definition of that datum. + + + + + + + + + + gml:affineCS is an association role to the affine coordinate system used by this CRS. + + + + + gml:cartesianCS is an association role to the Cartesian coordinate system used by this CRS. + + + + + gml:sphericalCS is an association role to the spherical coordinate system used by this CRS. + + + + + gml:cylindricalCS is an association role to the cylindrical coordinate system used by this CRS. + + + + + gml:linearCS is an association role to the linear coordinate system used by this CRS. + + + + + gml:polarCS is an association role to the polar coordinate system used by this CRS. + + + + + gml:userDefinedCS is an association role to the user defined coordinate system used by this CRS. + + + + + gml:CartesianCS is a 1-, 2-, or 3-dimensional coordinate system. In the 1-dimensional case, it contains a single straight coordinate axis. In the 2- and 3-dimensional cases gives the position of points relative to orthogonal straight axes. In the multi-dimensional case, all axes shall have the same length unit of measure. A CartesianCS shall have one, two, or three gml:axis property elements. + + + + + + + + + + gml:CartesianCSPropertyType is a property type for association roles to a Cartesian coordinate system, either referencing or containing the definition of that coordinate system. + + + + + + + + + gml:LinearCS is a one-dimensional coordinate system that consists of the points that lie on the single axis described. The associated coordinate is the distance – with or without offset – from the specified datum to the point along the axis. A LinearCS shall have one gml:axis property element. + + + + + + + + + + gml:LinearCSPropertyType is a property type for association roles to a linear coordinate system, either referencing or containing the definition of that coordinate system. + + + + + + + + + gml:UserDefinedCS is a two- or three-dimensional coordinate system that consists of any combination of coordinate axes not covered by any other coordinate system type. A UserDefinedCS shall have two or three gml:axis property elements; the number of property elements shall equal the dimension of the CS. + + + + + + + + + + gml:UserDefinedCSPropertyType is a property type for association roles to a user-defined coordinate system, either referencing or containing the definition of that coordinate system. + + + + + + + + + gml:SphericalCS is a three-dimensional coordinate system with one distance measured from the origin and two angular coordinates. A SphericalCS shall have three gml:axis property elements. + + + + + + + + + + gml:SphericalCSPropertyType is property type for association roles to a spherical coordinate system, either referencing or containing the definition of that coordinate system. + + + + + + + + + gml:PolarCS ia s two-dimensional coordinate system in which position is specified by the distance from the origin and the angle between the line from the origin to a point and a reference direction. A PolarCS shall have two gml:axis property elements. + + + + + + + + + + gml:PolarCSPropertyType is a property type for association roles to a polar coordinate system, either referencing or containing the definition of that coordinate system. + + + + + + + + + gml:CylindricalCS is a three-dimensional coordinate system consisting of a polar coordinate system extended by a straight coordinate axis perpendicular to the plane spanned by the polar coordinate system. A CylindricalCS shall have three gml:axis property elements. + + + + + + + + + + gml:CylindricalCSPropertyType is a property type for association roles to a cylindrical coordinate system, either referencing or containing the definition of that coordinate system. + + + + + + + + + gml:AffineCS is a two- or three-dimensional coordinate system with straight axes that are not necessarily orthogonal. An AffineCS shall have two or three gml:axis property elements; the number of property elements shall equal the dimension of the CS. + + + + + + + + + + gml:AffineCSPropertyType is a property type for association roles to an affine coordinate system, either referencing or containing the definition of that coordinate system. + + + + + + + + + gml:CoordinateSystemAxisPropertyType is a property type for association roles to a coordinate system axis, either referencing or containing the definition of that axis. + + + + + + + + + gml:AbstractCoordinateSystem is a coordinate system (CS) is the non-repeating sequence of coordinate system axes that spans a given coordinate space. A CS is derived from a set of mathematical rules for specifying how coordinates in a given space are to be assigned to points. The coordinate values in a coordinate tuple shall be recorded in the order in which the coordinate system axes associations are recorded. This abstract complex type shall not be used, extended, or restricted, in an Application Schema, to define a concrete subtype with a meaning equivalent to a concrete subtype specified in this document. + + + + + + + + + + + + + + + The gml:axis property is an association role (ordered sequence) to the coordinate system axes included in this coordinate system. The coordinate values in a coordinate tuple shall be recorded in the order in which the coordinate system axes associations are recorded, whenever those coordinates use a coordinate reference system that uses this coordinate system. The gml:AggregationAttributeGroup should be used to specify that the axis objects are ordered. + + + + + gml:AbstractSingleCRS implements a coordinate reference system consisting of one coordinate system and one datum (as opposed to a Compound CRS). + + + + + gml:AbstractCRS specifies a coordinate reference system which is usually single but may be compound. This abstract complex type shall not be used, extended, or restricted, in a GML Application Schema, to define a concrete subtype with a meaning equivalent to a concrete subtype specified in this document. + + + + + + + + + + + + + + + + Association to the coordinate system used by this CRS. + + + + + + Association to a coordinate system, either referencing or containing the definition of that coordinate system. + + + + + + + + + + Association to the engineering datum used by this CRS. + + + + + + Association to an engineering datum, either referencing or containing the definition of that datum. + + + + + + + + + + + + + + + + + + + + + + + + + + A LineString is a special curve that consists of a single segment with linear interpolation. It is defined by two or more coordinate tuples, with linear interpolation between them. The number of direct positions in the list shall be at least two. + + + + + gml:MeasureType supports recording an amount encoded as a value of XML Schema double, together with a units of measure indicated by an attribute uom, short for “units Of measure”. The value of the uom attribute identifies a reference system for the amount, usually a ratio or interval scale. + + + + + + + + + + + + + + For some applications the components of the position may be adjusted to yield a unit vector. + + + + + + + + + + To associate metadata described by any XML Schema with a GML object, a property element shall be defined whose content model is derived by extension from gml:AbstractMetadataPropertyType. + The value of such a property shall be metadata. The content model of such a property type, i.e. the metadata application schema shall be specified by the GML Application Schema. + By default, this abstract property type does not imply any ownership of the metadata. The owns attribute of gml:OwnershipAttributeGroup may be used on a metadata property element instance to assert ownership of the metadata. + If metadata following the conceptual model of ISO 19115 is to be encoded in a GML document, the corresponding Implementation Specification specified in ISO/TS 19139 shall be used to encode the metadata information. + + + + + + + + + + + + + + + + + + + A gml:CompositeCurve is represented by a sequence of (orientable) curves such that each curve in the sequence terminates at the start point of the subsequent curve in the list. + curveMember references or contains inline one curve in the composite curve. + The curves are contiguous, the collection of curves is ordered. Therefore, if provided, the aggregationType attribute shall have the value “sequence”. + + + + + + + + + + + + + + + A gml:CompositeSurface is represented by a set of orientable surfaces. It is geometry type with all the geometric properties of a (primitive) surface. Essentially, a composite surface is a collection of surfaces that join in pairs on common boundary curves and which, when considered as a whole, form a single surface. + surfaceMember references or contains inline one surface in the composite surface. + The surfaces are contiguous. + + + + + + + The gml:RectifiedGridCoverage is a discrete point coverage based on a rectified grid. It is similar to the grid coverage except that the points of the grid are geometrically referenced. The rectified grid coverage has a domain that is a gml:RectifiedGrid geometry. + + + + + The base type for coverages is gml:AbstractCoverageType. The basic elements of a coverage can be seen in this content model: the coverage contains gml:domainSet and gml:rangeSet properties. The gml:domainSet property describes the domain of the coverage and the gml:rangeSet property describes the range of the coverage. + + + + + + + + + + + + + This element serves as the head of a substitution group which may contain any coverage whose type is derived from gml:AbstractCoverageType. It may act as a variable in the definition of content models where it is required to permit any coverage to be valid. + + + + + + + + + + + + + + A discrete coverage consists of a domain set, range set and optionally a coverage function. The domain set consists of either spatial or temporal geometry objects, finite in number. The range set is comprised of a finite number of attribute values each of which is associated to every direct position within any single spatiotemporal object in the domain. In other words, the range values are constant on each spatiotemporal object in the domain. This coverage function maps each element from the coverage domain to an element in its range. The coverageFunction element describes the mapping function. + This element serves as the head of a substitution group which may contain any discrete coverage whose type is derived from gml:DiscreteCoverageType. + + + + + The gml:domainSet property element describes the spatio-temporal region of interest, within which the coverage is defined. Its content model is given by gml:DomainSetType. + The value of the domain is thus a choice between a gml:AbstractGeometry and a gml:AbstractTimeObject. In the instance these abstract elements will normally be substituted by a geometry complex or temporal complex, to represent spatial coverages and time-series, respectively. + The presence of the gml:AssociationAttributeGroup means that domainSet follows the usual GML property model and may use the xlink:href attribute to point to the domain, as an alternative to describing the domain inline. Ownership semantics may be provided using the gml:OwnershipAttributeGroup. + + + + + + + + + + + + + + + + + The gml:rangeSet property element contains the values of the coverage (sometimes called the attribute values). Its content model is given by gml:RangeSetType. + This content model supports a structural description of the range. The semantic information describing the range set is embedded using a uniform method, as part of the explicit values, or as a template value accompanying the representation using gml:DataBlock and gml:File. + The values from each component (or “band”) in the range may be encoded within a gml:ValueArray element or a concrete member of the gml:AbstractScalarValueList substitution group . Use of these elements satisfies the value-type homogeneity requirement. + + + + + + + + + + + + gml:DataBlock describes the Range as a block of text encoded values similar to a Common Separated Value (CSV) representation. + The range set parameterization is described by the property gml:rangeParameters. + + + + + + + + + + + + + + + + gml:CompositeValue is an aggregate value built from other values . It contains zero or an arbitrary number of gml:valueComponent elements, and zero or one gml:valueComponents property elements. It may be used for strongly coupled aggregates (vectors, tensors) or for arbitrary collections of values. + + + + + + + + + + + + + + + + gml:AbstractValue is an abstract element which acts as the head of a substitution group which contains gml:AbstractScalarValue, gml:AbstractScalarValueList, gml:CompositeValue and gml:ValueExtent, and (transitively) the elements in their substitution groups. + These elements may be used in an application schema as variables, so that in an XML instance document any member of its substitution group may occur. + + + + + Property that refers to, or contains, a Value. + + + + + + + + + + + + + Property that contains Values. + + + + + + + + + + + + + A Value Array is used for homogeneous arrays of primitive and aggregate values. + The member values may be scalars, composites, arrays or lists. + ValueArray has the same content model as CompositeValue, but the member values shall be homogeneous. The element declaration contains a Schematron constraint which expresses this restriction precisely. Since the members are homogeneous, the gml:referenceSystem (uom, codeSpace) may be specified on the gml:ValueArray itself and inherited by all the members if desired. + + + + + + + + + + + + + + + + + + gml:CoordinatesType consists of a list of coordinate tuples, with each coordinate tuple separated by the ts or tuple separator (whitespace), and each coordinate in the tuple by the cs or coordinate separator (comma). + The gml:tupleList encoding is effectively “band-interleaved”. + + + + + gml:doubleOrNilReasonList consists of a list of gml:doubleOrNilReason values, each separated by a whitespace. The gml:doubleOrNilReason values are grouped into tuples where the dimension of each tuple in the list is equal to the number of range parameters. + + + + + + The gml:coverageFunction property describes the mapping function from the domain to the range of the coverage. + The value of the CoverageFunction is one of gml:CoverageMappingRule and gml:GridFunction. + If the gml:coverageFunction property is omitted for a gridded coverage (including rectified gridded coverages) the gml:startPoint is assumed to be the value of the gml:low property in the gml:Grid geometry, and the gml:sequenceRule is assumed to be linear and the gml:axisOrder property is assumed to be “+1 +2”. + + + + + + + + + + + gml:CoverageMappingRule provides a formal or informal description of the coverage function. + The mapping rule may be defined as an in-line string (gml:ruleDefinition) or via a remote reference through xlink:href (gml:ruleReference). + If no rule name is specified, the default is ‘Linear’ with respect to members of the domain in document order. + + + + + + + + + + + gml:GridFunction provides an explicit mapping rule for grid geometries, i.e. the domain shall be a geometry of type grid. It describes the mapping of grid posts (discrete point grid coverage) or grid cells (discrete surface coverage) to the values in the range set. + The gml:startPoint is the index position of a point in the grid that is mapped to the first point in the range set (this is also the index position of the first grid post). If the gml:startPoint property is omitted the gml:startPoint is assumed to be equal to the value of gml:low in the gml:Grid geometry. Subsequent points in the mapping are determined by the value of the gml:sequenceRule. + + + + + + + + + + + The gml:SequenceRuleType is derived from the gml:SequenceRuleEnumeration through the addition of an axisOrder attribute. The gml:SequenceRuleEnumeration is an enumerated type. The rule names are defined in ISO 19123. If no rule name is specified the default is “Linear”. + + + + + + + + + + + + + + + + + + + + + The different values in a gml:AxisDirectionList indicate the incrementation order to be used on all axes of the grid. Each axis shall be mentioned once and only once. + + + + + + The value of a gml:AxisDirection indicates the incrementation order to be used on an axis of the grid. + + + + + + + + This type is deprecated for tuples with ordinate values that are numbers. + CoordinatesType is a text string, intended to be used to record an array of tuples or coordinates. + While it is not possible to enforce the internal structure of the string through schema validation, some optional attributes have been provided in previous versions of GML to support a description of the internal structure. These attributes are deprecated. The attributes were intended to be used as follows: + Decimal symbol used for a decimal point (default=”.” a stop or period) + cs symbol used to separate components within a tuple or coordinate string (default=”,” a comma) + ts symbol used to separate tuples or coordinate strings (default=” “ a space) + Since it is based on the XML Schema string type, CoordinatesType may be used in the construction of tables of tuples or arrays of tuples, including ones that contain mixed text and numeric values. + + + + + + + + + + + + + + + + + + + A type for a list of values of the respective simple type. + + + + + + Extension to the respective XML Schema built-in simple type to allow a choice of either a value of the built-in simple type or a reason for a nil value. + + + + + + A type for a list of values of the respective simple type. + + + + + + + The gml:Grid implicitly defines an unrectified grid, which is a network composed of two or more sets of curves in which the members of each set intersect the members of the other sets in an algorithmic way. The region of interest within the grid is given in terms of its gml:limits, being the grid coordinates of diagonally opposed corners of a rectangular region. gml:axisLabels is provided with a list of labels of the axes of the grid (gml:axisName has been deprecated). gml:dimension specifies the dimension of the grid. + The gml:limits element contains a single gml:GridEnvelope. The gml:low and gml:high property elements of the envelope are each integerLists, which are coordinate tuples, the coordinates being measured as offsets from the origin of the grid along each axis, of the diagonally opposing corners of a “rectangular” region of interest. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + A rectified grid is a grid for which there is an affine transformation between the grid coordinates and the coordinates of an external coordinate reference system. It is defined by specifying the position (in some geometric space) of the grid “origin” and of the vectors that specify the post locations. + Note that the grid limits (post indexes) and axis name properties are inherited from gml:GridType and that gml:RectifiedGrid adds a gml:origin property (contains or references a gml:Point) and a set of gml:offsetVector properties. + + + + + + + + + + + + + + + + In a gml:MultiPointCoverage the domain set is a gml:MultiPoint, that is a collection of arbitrarily distributed geometric points. + The content model is identical with gml:DiscreteCoverageType, but that gml:domainSet shall have values gml:MultiPoint. + In a gml:MultiPointCoverage the mapping from the domain to the range is straightforward. + - For gml:DataBlock encodings the points of the gml:MultiPoint are mapped in document order to the tuples of the data block. + - For gml:CompositeValue encodings the points of the gml:MultiPoint are mapped to the members of the composite value in document order. + - For gml:File encodings the points of the gml:MultiPoint are mapped to the records of the file in sequential order. + + + + + + + + + + + + + + + + + + A ring is used to represent a single connected component of a surface boundary as specified in ISO 19107:2003, 6.3.6. + Every gml:curveMember references or contains one curve, i.e. any element which is substitutable for gml:AbstractCurve. In the context of a ring, the curves describe the boundary of the surface. The sequence of curves shall be contiguous and connected in a cycle. + If provided, the aggregationType attribute shall have the value “sequence”. + + + + + + + + + + + + + + + + + + The property baseCurve references or contains the base curve, i.e. it either references the base curve via the XLink-attributes or contains the curve element. A curve element is any element which is substitutable for AbstractCurve. The base curve has positive orientation. + + + + + OrientableCurve consists of a curve and an orientation. If the orientation is "+", then the OrientableCurve is identical to the baseCurve. If the orientation is "-", then the OrientableCurve is related to another AbstractCurve with a parameterization that reverses the sense of the curve traversal. + + + + + + gml:SignType is a convenience type with values “+” (plus) and “-“ (minus). + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + gml:AbstractTimeObject acts as the head of a substitution group for all temporal primitives and complexes. + + + + + + gml:TimeGeometricPrimitive acts as the head of a substitution group for geometric temporal primitives. + A temporal geometry shall be associated with a temporal reference system through the frame attribute that provides a URI reference that identifies a description of the reference system. Following ISO 19108, the Gregorian calendar with UTC is the default reference system, but others may also be used. The GPS calendar is an alternative reference systems in common use. + The two geometric primitives in the temporal dimension are the instant and the period. GML components are defined to support these as follows. + + + + + + gml:RelatedTimeType provides a content model for indicating the relative position of an arbitrary member of the substitution group whose head is gml:AbstractTimePrimitive. It extends the generic gml:TimePrimitivePropertyType with an XML attribute relativePosition, whose value is selected from the set of 13 temporal relationships identified by Allen (1983) + + + + + + + + + + + + + + + + + + + + + + + + + + + + + gml:TimePrimitivePropertyType provides a standard content model for associations between an arbitrary member of the substitution group whose head is gml:AbstractTimePrimitive and another object. + + + + + + + + + + + gml:AbstractTimePrimitive acts as the head of a substitution group for geometric and topological temporal primitives. + + + + + + gml:TimeInstant acts as a zero-dimensional geometric primitive that represents an identifiable position in time. + + + + + + + + + + + + + + gml:TimeInstantPropertyType provides for associating a gml:TimeInstant with an object. + + + + + + + + + + + This element is used directly as a property of gml:TimeInstant (see 15.2.2.3), and may also be used in application schemas. + + + + + + The method for identifying a temporal position is specific to each temporal reference system. gml:TimePositionType supports the description of temporal position according to the subtypes described in ISO 19108. + Values based on calendars and clocks use lexical formats that are based on ISO 8601, as described in XML Schema Part 2:2001. A decimal value may be used with coordinate systems such as GPS time or UNIX time. A URI may be used to provide a reference to some era in an ordinal reference system . + In common with many of the components modelled as data types in the ISO 19100 series of International Standards, the corresponding GML component has simple content. However, the content model gml:TimePositionType is defined in several steps. + Three XML attributes appear on gml:TimePositionType: + A time value shall be associated with a temporal reference system through the frame attribute that provides a URI reference that identifies a description of the reference system. Following ISO 19108, the Gregorian calendar with UTC is the default reference system, but others may also be used. Components for describing temporal reference systems are described in 14.4, but it is not required that the reference system be described in this, as the reference may refer to anything that may be indentified with a URI. + For time values using a calendar containing more than one era, the (optional) calendarEraName attribute provides the name of the calendar era. + Inexact temporal positions may be expressed using the optional indeterminatePosition attribute. This takes a value from an enumeration. + + + + + + + + + + + + These values are interpreted as follows: + - "unknown" indicates that no specific value for temporal position is provided. + - "now" indicates that the specified value shall be replaced with the current temporal position whenever the value is accessed. + - "before" indicates that the actual temporal position is unknown, but it is known to be before the specified value. + - "after" indicates that the actual temporal position is unknown, but it is known to be after the specified value. + A value for indeterminatePosition may + - be used either alone, or + - qualify a specific value for temporal position. + + + + + + + + + + + + The simple type gml:TimePositionUnion is a union of XML Schema simple types which instantiate the subtypes for temporal position described in ISO 19108. + An ordinal era may be referenced via URI. A decimal value may be used to indicate the distance from the scale origin . time is used for a position that recurs daily (see ISO 19108:2002 5.4.4.2). + Finally, calendar and clock forms that support the representation of time in systems based on years, months, days, hours, minutes and seconds, in a notation following ISO 8601, are assembled by gml:CalDate + + + + + + + + + + diff --git a/gml3.3Profile_diggs.xsd b/gml3.3Profile_diggs.xsd new file mode 100644 index 00000000..db288f77 --- /dev/null +++ b/gml3.3Profile_diggs.xsd @@ -0,0 +1,25 @@ + + + + Draft GML 3.3 subset for DIGGS including: LinearReferencing, Compact Geometry + Encodings + + + + + + + + + + + + + + + + + diff --git a/witsml/1.3.1.1/typ_baseType.xsd b/witsml/1.3.1.1/typ_baseType.xsd new file mode 100644 index 00000000..8819d2dc --- /dev/null +++ b/witsml/1.3.1.1/typ_baseType.xsd @@ -0,0 +1,238 @@ + + + + + + + + + + + + This type disallows an "empty" boolean value. + This type should not be used directly except to derive another type. + All boolean types should be derived from this type rather than using boolen. + + + + + + + + + This type disallows an "empty" dateTime value. + This type should not be used directly except to derive another type. + All dateTime types should be derived from this type rather than using dateTime. + + + + + + + + + This type disallows an "empty" date value. + This type should not be used directly except to derive another type. + All dateTime types should be derived from this type rather than using dateTime. + + + + + + + + + This type disallows an "empty" gYear value. + This type should not be used directly except to derive another type. + All year types should be derived from this type rather than using gYear. + + + + + + + + + This type disallows an "empty" double value. + This type should not be used directly except to derive another type. + + + + + + + + + This type disallows an "empty" short value. + This type should not be used directly except to derive another type. + + + + + + + + + This type disallows an "empty" int value. + This type should not be used directly except to derive another type. + + + + + + + + + The intended abstract supertype of all strings. + This abstract type allows the control over whitespace for all strings to be defined at a high level. + This type should not be used directly except to derive another type. + + + + + Replace tab, line feed and carriage return with + a space, collapse contiguous sequences of spaces to a single space + and then remove leading and trailing spaces. + + + + + The empty string is not allowed. + This constraint conbined with the whiteSpace collapse constraint means + that a blank value is not allowed. + + + + + + + + The intended abstract supertype of all quantities that have a value + with a unit of measure. The unit of measure is in the uom attribute of the subtypes. + This type allows all quantities to be profiled to be a 'float' instead of a 'double'. + + + + + + + + + This defines the maximum acceptable length of a + string that can be stored in a data base. + + + + + This value should be the smallest "maximum + size of a variable length character type" in commonly used DBMSs. + This is the maximum size of a VARCHAR2 in Oracle 8. + + + + + + + + The intended abstract supertype of all strings that must maintain whitespace. + The type abstractString should normally be used. + This type should not be used directly except to derive another type. + + + + + The empty string is not allowed. + + + + + + + + + + A positive integer (one based count or index) with a maximum value of 32767 (2-bytes). + + + + + This value cannot be negative or zero. + + + + + + + + + + The intended abstract supertype of all user assigned human + recognizable contextual name types. + There should be no assumption that (interoperable) semantic information will be extracted from the name by a third party. + This type of value is generally not guaranteed to be unique and is not a candidate to be replaced by an enumeration. + + + + + + + + + The intended abstract supertype of all locally unique identifiers. + The value is not intended to convey any semantic content (e.g., it may be computer generated). + The value is only required to be unique within a context in a document (e.g., defined via key and keyref). + There is no guarantee that the same data in multiple documents will utilize the same uid value + unless enforced by the source of the document (e.g., a document server). + Spaces are not allowed. + + + + + + + + + + The intended abstract supertype of all comments or remarks + intended for human consumption. + There should be no assumption that semantics can be extracted from the field by a computer. + Neither should there be an assumption that any two humans will interpret the information + in the same way (i.e., it may not be interoperable). + + + + + + + The intended abstract supertype of all enumerated "types". + This abstract type allows the maximum length of a type enumeration to be centrally defined. + This type should not be used directly except to derive another type. + It should also be used for uncontrolled strings which are candidates to become enumerations at a future date. + + + + + + + + + The intended abstract supertype of all "units of measure". + This abstract type allows the maximum length of a UOM enumeration to be centrally defined. + This type is abstract in the sense that it should not be used directly + except to derive another type. + + + + + + + diff --git a/witsml/1.3.1.1/typ_catalog.xsd b/witsml/1.3.1.1/typ_catalog.xsd new file mode 100644 index 00000000..bf1b36cb --- /dev/null +++ b/witsml/1.3.1.1/typ_catalog.xsd @@ -0,0 +1,7515 @@ + + + + + + + + WITSML- Catalog of Value Constrainted Types. + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + Activity codes. + The list of standard values is contained in the WITSML enumValues.xml file. + + + + + + + + + + The north direction as defined by the magnetic + north pole at the time of the measurement. The magnetic north pole + is the direction that a magnet will point to when freely rotating. + + + + + The north direction is defined by the coordinate + grid in the projection coordinate system. + + + + + The north direction as defined by the true + north pole. The true north pole is an average of the actual measured + north axis, which is the axis of rotation of the earth. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + A list of binary representations for elements of + aggregates which may be Base64-encoded + (e. g. elements of well log array traces, or + multiplexed frames of similar-typed well log traces) + as described in + "XML Schema Part 2: Datatypes", 3.2.16 base64binary + [http://www.w3.org/TR/xmlschema-2/#base4Binary]] + and in + "Multipurpose Internet Mail Extensions (MIME) Part One: + Format of Internet Message Bodies" (IETF RFC 2045) + [ http://www.ietf.org/rfc/rfc2045.txt ]. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent a classification of a drill bit based + on its reason for being declared inoperable, as originally defined by the IADC. + + + + + Broken Cone + + + + + Broken teeth/cutters + + + + + Balled Up + + + + + Cracked Cone + + + + + Cone Dragged + + + + + Cone Interference + + + + + Cored + + + + + Chipped Teeth + + + + + Erosion + + + + + Flat Crested Wear + + + + + Heat Checking + + + + + Junk Damage + + + + + Lost Nozzle + + + + + Lost Nozzle + + + + + Lost Teeth/Cutters + + + + + No Dull/No Other Wear + + + + + Off-Center Wear + + + + + Pinched Bit + + + + + Plugged Nozzle + + + + + Rounded Gauge + + + + + Ring Out + + + + + Shirttail Damage + + + + + Self-Sharpening Wear + + + + + Tracking + + + + + WashOut on Bit + + + + + Worn Teeth/Cutters + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the reason for pulling a drill bit + from the wellbore, as originally defined by the IADC. + + + + + Change Bottom Hole Assembly + + + + + Condition Mud + + + + + Core Point + + + + + Downhole Motor Failure + + + + + Drill Plug + + + + + Drill Stem Test + + + + + Downhole Tool Failure + + + + + Formation Change + + + + + Hole Problems + + + + + Hours on Bit + + + + + Run Logs + + + + + Pump Pressure + + + + + Penetration Rate + + + + + Rig Repairs + + + + + Total Depth/Casing Depth + + + + + Torque + + + + + Twist Off + + + + + Weather Conditions + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the type of drill/core bit. + + + + + Diamond bit + + + + + Diamond core bit + + + + + Insert roller cone bit + + + + + polycrystalline diamond compact fixed cutter bit + + + + + polycrystalline diamond compact core bit + + + + + Milled tooth roller cone bit + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the type of Box/Pin configuration. + + + + + Bottom box, top box + + + + + Bottom box, top pin + + + + + Bottom pin top box + + + + + Bottom pin + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the position of a connection. + + + + + The connection is the same at both ends of the component + + + + + This connection is only at the bottom of the component + + + + + This connection is only at the top of the component + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent method used to direct the + deviation of the trajectory. + + + + + Rotary Steerable System that deviates a + wellbore by tilting the bit to point it in the desired + direction. + + + + + Rotary Steerable System that deviates + a wellbore by inducing a side force to push the bit in + the desired direction. + + + + + + + + These values represent the type of drilling derrick. + + + + + 2 stand capacity derrick + + + + + 4 stand capacity derrick + + + + + Slant derrick + + + + + 3 stand capacity derrick + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the type of work string drive (rotary system). + + + + + Coiled tubing rig + + + + + Kelly drive system + + + + + Top Drive + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + The type of local or permanent reference datum for vertical gravity based + (i.e., elevation and vertical depth) and measured depth coordinates within the context of a well. + This list includes local points (e.g., kelly bushing) used as a datum and + vertical reference datums (e.g., mean sea level). + + + + + casing flange: A flange affixed to the top of the + casing string used to attach production equipment. + + + + + crown valve + + + + + derrick floor + + + + + ground level + + + + + kelly bushing + + + + + rotary bushing + + + + + rotary table + + + + + sea floor + + + + + Lowest Astronomical Tide. The lowest tide level + over the duration of the National Tidal Datum Epoch (19 years). + + + + + Mean Sea Level - A tidal datum. The arithmetic mean + of hourly heights observed over the National Tidal Datum Epoch (19 years). + + + + + Mean Higher High Water - A tidal datum. The average of + the higher high water height of each tidal day observed over the National + Tidal Datum Epoch (19 years). + + + + + Mean High Water - A tidal datum. The average of all the + high water heights observed over the National Tidal Datum Epoch (19 years). + + + + + Mean Lower Low Water - A tidal datum. The average of the + lower low water height of each tidal day observed over the National Tidal + Datum Epoch (19 years ). + + + + + Mean Low Water - A tidal datum. The average of all the + low water heights observed over the National Tidal Datum Epoch (19 years). + + + + + Mean Tide Level - A tidal datum. The arithmetic mean of mean + high water and mean low water. Same as half-tide level. + + + + + kickoff point + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the type of ellipsoid (spheroid) + defining geographic or planar coordinates. + + + + + Australian Old + + + + + Modified Airy + + + + + Airy 1830 + + + + + Airy 1849 + + + + + Australian National Same as KAU63 and SA69 + + + + + Bessel Modified + + + + + Bessel - NGO 1948 + + + + + Bessel - RT90 + + + + + Bessel 1841 + + + + + Bessel 1841 for Namibia + + + + + BOGOTA (International 1924) + + + + + Clarke 1858 + + + + + Clarke 1858-1 + + + + + Clarke 1866 + + + + + Clarke 1866 for Michigan + + + + + Clarke 1880 + + + + + Clarke 1880 variation A + + + + + Clarke 1880 variation B + + + + + Clarke 1880 IGN + + + + + Clarke 1880 for Jamaica + + + + + Clarke 1880 for Merchich + + + + + Clarke 1880 for Palestine + + + + + CAMPO INCH (International 1924) + + + + + Danish + + + + + DELAMBRE 1810 + + + + + ED50 (International 1924) + + + + + EGYPT07 (Helmert 1906) + + + + + Everest 1830 - Indian + + + + + Everest 1948 + + + + + Everest 1956 + + + + + Everest 1969 + + + + + Everest Brunei + + + + + Modified Everest + + + + + Everest Pakistan + + + + + Everest 1830 (modified) Timbalai + + + + + Everest - Timbali + + + + + "Fischer 1960 aka ""Mercury""" + + + + + Fischer 1960 Modified + + + + + "Fischer 1968 aka ""Modified Mercury""" + + + + + "Modified Fischer 1960 aka ""South Asia""" + + + + + GDA94 - Australia + + + + + Geodetic Reference System 1967 + + + + + Geodetic Reference System 1980 + + + + + Hayford 1909 + + + + + Heiskanen 1929 + + + + + Helmert 1906 + + + + + Helmert 1907 + + + + + Hough 1956 + + + + + IAG 75 + + + + + INDIAN75 (Everest 1930) + + + + + INDO74 (Indonesian 1974) + + + + + International 1924 + + + + + IUGG 1967 + + + + + IUGG 1975 + + + + + Jeffreys 1948 + + + + + Kaula 1963 Same as AUST_NAT and SA69 + + + + + Krassovsky + + + + + MERIT83 + + + + + NAD27 (Clarke 1866) + + + + + NAHRAN (Clarke 1880) + + + + + New International 1967 + + + + + NWL 10D + + + + + NWL 9D + + + + + OSGB36 (Airy 1830) + + + + + OSU86F + + + + + OSU91A + + + + + Plessis 1817 + + + + + PSAD56 (International 1924) + + + + + Pointe Noire 1948 + + + + + South American 1969 + + + + + Sphere of radius 6370997 + + + + + Struve 1860 + + + + + Walbeck + + + + + War Office 1924 + + + + + World Geodetic System 1960 + + + + + World Geodetic System 1966 + + + + + World Geodetic System 1972 + + + + + World Geodetic System 1984 + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + The mode of a Distributed Temperature Survey (DTS) fiber. + + + + + A single, narrow, core of constant refractive index, + surrounded by glass cladding. The core diameter is comparable to a + wave length of the light (about 5 um). + + + + + The core has a graded refractive index. The + core is generally about 50um in diameter. + + + + + The fiber mode is neither singlemode or multimode. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the type of geodetic datum. + The source (except for "none", "unknown" and "UserDefined") of the values + and the descriptions is Geoshare V13. + + + + + Adindian ellipsoid=CL80 region="Sudan, Ethiopia" + + + + + ARC 1950 ellipsoid=CL80B region="Southern Africa" + + + + + Australian ellipsoid=GRS67 region="Australia Geodetic" + + + + + Camp Area Astro ellipsoid=INT24 region=Antarctica + + + + + Chau Astro ellipsoid=INT24 region=Paraguay + + + + + Corrego Alegre ellipsoid=INT24 region=INT24 + + + + + European 1950 ellipsoid=INT24 region="Europe, Middle East, North Africa" + + + + + European 1987 ellipsoid=INT24 region="Europe, Middle East, North Africa" + + + + + Ireland 1965 ellipsoid=AIRY_MOD region=Ireland + + + + + Geodetic Datum 1949 ellipsoid=INT24 region="New Zealand" + + + + + Ghana ellipsoid=WAR24 region=Ghana + + + + + Guam 1963 ellipsoid=CL66 region="Marianas Islands" + + + + + Hjorsey 1955 ellipsoid=INT24 region=Iceland + + + + + Hu-Tzu-Shan ellipsoid=INT24 region=Taiwan + + + + + Campo Inchauspe ellipsoid=INT24 region=Argentina + + + + + Indian 'Kalimpur' ellipsoid=EVER region=India + + + + + Indian 'Kalimpur' ellipsoid=INT24 region=India + + + + + Indonesia 1974 ellipsoid=GRS67 region=Indonesia + + + + + Liberia 1964 ellipsoid=CL80 region=Liberia + + + + + Luzon ellipsoid=CL66 region=Philippines + + + + + Merchich ellipsoid=CL80A region=Morocco + + + + + North American 'Meades Ranch' ellipsoid=CL66 region="North America" + + + + + North American Datum of 1983 ellipsoid=GRS80 region="Canada, Cuba, U.S., Caribbean" + + + + + Nigeria ellipsoid=CL80 region=Nigeria + + + + + + + + + + Naparima ellipsoid=INT24 region="Trinidad and Tobago" + + + + + Ordnance Survey of Great Britain 1936 ellipsoid=AIRY region="Great Britain, Northern Ireland" + + + + + European 'Pelmert Tower, Potsdam' ellipsoid=INT24 region="Most of Eurasia, Africa" + + + + + Russian 'Pulkovo' ellipsoid=BESS41 + + + + + Russian 'Pulkovo' ellipsoid=KRSV + + + + + Qornoq ellipsoid=INT24 region=Greenland + + + + + Provisional South American, 1956 ellipsoid=INT24 region="Bolivia, Chile, Colombia, Ecuador, Peru, Venezuela, the Guianas" + + + + + Sierra Leone 1960 ellipsoid=CL80 region="Sierra Leone" + + + + + Tananarive (Antananarivo) Obsv. 1925T ellipsoid=INT24 region="Malagasy Republic" + + + + + Tokyo ellipsoid=BESS41 region=Japan + + + + + Datum defined elsewhere + + + + + Voirol ellipsoid=CL80 region="Algeria, Tunisia" + + + + + World Geodetic System 1972 ellipsoid=WGS72 + + + + + World Geodetic System 1984 ellipsoid=WGS84 region="Sino-Soviet Bloc, SW Asia, Hydrographic, Aeronautical" + + + + + Yacare ellipsoid=INT24 region=Uruguay + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + Northern hemisphere. + + + + + Southern hemisphere. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the state of a WITSML object. + + + + + Actual data measured or entered at the well site. + + + + + Model data used for "what if" calculations. + + + + + A planned object. That is, one which is expected to be executed in the future. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + The type of Distributed Temperature Survey (DTS) fiber point. + + + + + A point at which a fiber is physically, and semi-permanently, + connected to another length of fiber. + + + + + A point at which a cable connector is installed, which allows + the fiber to be connected to another instrument or fiber length. + + + + + The end of the fiber. If a U-geometry is used, and a connector + is at both ends, the connector classification should be used rather than the end + of fiber classification. + + + + + The deepest point of the installed fiber in a well. This is + a valid value for fiber installations that do NOT turn around at the bottom + (J- and U-type installations). + + + + + The point in the turn-around-sub at which measured depth + stops increasing and begins decreasing. This is a valid value for fiber + installations of the J- and U- type only. + + + + + The start of the fiber. If appropriate, the connector + classification should be used instead of this classification. + + + + + The point on the fiber at which it enters the oven. + + + + + The point on the fiber at which it exits the oven. + The oven exit point should be closer to the wellbore than the oven entry point. + + + + + A downhole point on the fiber at which a gauge is attached. + + + + + The connector between the laser head and the optical fiber. + + + + + The oven within or near the DTS instrument box which + maintains a length of fiber at a reference temperature. + + + + + Container in which ends of lengths of fiber are joined. + + + + + The device at which a fiber originating at the instrument + box is joined to a fiber installed in a wellbore. This is a recommended + location at which LengthAlongFiber and measuredDepth in the wellbore are + correlated + + + + + The device at the base of the wellhead to which the + production tubing is attached. This is a recommended location at which + LengthAlongFiber and measuredDepth in the wellbore are correlated. + + + + + The top-most point at which the fiber intersects the + PBR (polished bore receptacle). For J- and U- installations, on the upward + portion of the fiber, this is the point at which it leaves the pbf. + + + + + The top of the electrical submersible pump (ESP). + This is the minimum measured depth point of the pump. + + + + + The base of the electrical submersible pump (ESP). + This is the maximum measured depth point of the pump. + + + + + Temperature measuring device at the wellhead independent + of the optic fiber sensor. + + + + + The point which is the minimum measured depth of a + completion zone. + + + + + The point which is the maximum measured depth of a + completion zone. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + Specifies the source of lithology information. + + + + + The lithology has one overall interpretation based on + several sources such as logs and cuttings or cores. + + + + + The lithology as based on a visual inspection of the core. + A percentage is commonly assigned to each portion of the lithology. + + + + + The lithology as based on a visual inspection of the cuttings. + A percentage is commonly assigned to each portion of the lithology. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + The type of lithology. + The list of standard values is contained in the WITSML enumValues.xml file. + + + + + + + + The endcoding allowed in a realtime channel value or log curve value. + + + + + Date with time data value. + + + + + Double precision floating point value. + + + + + Long integer data value. + + + + + Character string data. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the direction of movement within a wellbore. + + + + + Log items are in order of decreasing index values + (e.g. wireline log logging while pulling out of hole) + + + + + Log items are in order of increasing index values + (e.g. increasing depths or times) + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the type of data used as an index value for a log. + + + + + Log is indexed on date with time. + + + + + Log is indexed on time. + + + + + Log is indexed on length (not a depth). + + + + + Log index is a measured depth index. + + + + + Log index is a vertical depth depth index . + + + + + Any other index type for a log. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + The data were read from a realtime sensor stream. + + + + + The data are synthetic. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + The source (except for "CH density porosity", "CH neutron porosity", "OH density porosity" + and "OH neutron porosity") of the values and the descriptions is the POSC V2.2 "well log trace class" + standard instance values which are documented as "A classification of well log traces based on + specification of a range of characteristics. Traces may be classed according to the type of physical + characteristic they are meant to measure." + + + + + Output from an accelerometer on a logging tool. + + + + + A well log which uses an acoustic device to measure hole diameter. + + + + + The signal measured by an acoustic device at the location of casing collars and other features (e.g., perforations). + + + + + Seismic velocity multiplied by density. + + + + + Porosity calculated from an acoustic log. + + + + + The velocity of an acoustic wave. + + + + + The time it takes for an acoustic wave to traverse a fixed distance of a given material or matrix. In this case the material or matrix is a specific, zero porosity rock, e.g. sandstone, limestone or dolomite. + + + + + The time it takes for an acoustic wave to traverse a fixed distance. + + + + + Any measurement of the maximum departure of a wave from an average value. + + + + + The extent of departure of an acoustic wave measured from the mean position. + + + + + The extent of departure of an electromagnetic wave measured from the mean position. + + + + + The ratio of two amplitudes. + + + + + A particular extent of space or surface. + + + + + The amount of reduction in the amplitude of a wave. + + + + + The amount of reduction in the amplitude of an acoustic wave. + + + + + The amount of reduction in the amplitude of an electromagnetic wave. + + + + + A general classification for measurements which are very specialized and not normally accessed by petrophysicists. + + + + + The pore volume of a rock averaged using various well log or core porosity measurements. + + + + + In the horizontal plane, it is the clockwise angle of departure from magnetic north (while looking down hole). + + + + + A trace which has been corrected for the effects of barite in the borehole fluid. + + + + + A trace which has been corrected for bed thickness effects. + + + + + The diameter of the drill bit used to drill the hole. + + + + + A well log trace which has been edited to reflect sharp bed boundaries. The trace has a square wave appearance. + + + + + A trace which has been corrected for the effects of the borehole environment; e.g., borehole size. + + + + + Deprecated. Use mud composition correction. + + + + + A trace which has been corrected for the effects of borehole fluid; e.g., a mud cake correction. + + + + + A trace which has been corrected for the effects of borehole size. + + + + + A trace which has been corrected for the effects of bromide in the borehole fluid. + + + + + The relative compressibility of a material. + + + + + The measured density of a rock with the pore volume filled with fluid. The pore fluid is generally assumed to be water. + + + + + A quantity per unit volume. + + + + + The quantity of gas present in a unit volume of rock. The product of gas saturation and total porosity. + + + + + The quantity of hydrocarbon present in a unit volume of rock. The product of hydrocarbon saturation and total porosity. + + + + + The quantity of oil present in a unit volume of rock. The product of oil saturation and total porosity. + + + + + The quantity of formation water present in a unit volume of rock. The product of water saturation and total porosity. + + + + + The ratio of the Carbon measurement to the Oxygen measurement. + + + + + A well log used to record hole diameter (open or cased). + + + + + A trace which has been corrected for the effects of being recorded in a cased hole; e.g., corrected for casing weight and thickness. + + + + + The signal measured by a device at the location of casing collars and other features (e.g., perforations). + + + + + A trace which has been corrected for the effects of casing; this includes things such as casing weight, thickness and diameter. + + + + + A trace which has been corrected for the effects of casing diameter. + + + + + Any of the measurements made for the purpose of determining the properties of the well casing. + + + + + A trace which has been corrected for the effects of casing thickness. + + + + + A trace which has been corrected for the effects of casing weight. + + + + + A trace which has been corrected for the effects of the cement surrounding the casing; this includes cement thickness, density and type. + + + + + A trace which has been corrected for the effects of cement density. + + + + + Any of the measurements made to determine the presence and quality of the cement bond to casing or to formation. + + + + + A trace which has been corrected for the effects of cement thickness. + + + + + A trace which has been corrected for the effects of the type of cement used. + + + + + + + + + + Porosity calculated from the bulk density measurement of a cased hole density log using a dolomite matrix density. + + + + + Porosity calculated from a cased hole neutron log using a dolomite matrix. + + + + + Porosity calculated from the bulk density measurement of a cased hole density log using a limestone matrix density. + + + + + Porosity calculated from a cased hole neutron log using a limestone matrix. + + + + + + + + + + Porosity calculated from the bulk density measurement of a cased hole density log using a sandstone matrix density. + + + + + Porosity calculated from an open hole neutron log using a sandstone matrix. + + + + + Porosity calculated from a compressional wave acoustic log using a dolomite matrix. + + + + + Porosity calculated from a compressional wave acoustic log using a limestone matrix + + + + + The time it takes for a compressional acoustic wave to traverse a fixed distance of a given material or matrix. In this case the material or matrix is a specific, zero porosity rock, e.g. sandstone, limestone or dolomite. + + + + + Porosity calculated from a compressional wave acoustic log using a sandstone matrix. + + + + + The time it takes for a compressional acoustic wave to traverse a fixed distance. + + + + + The property of a medium (solid or fluid) which allows the medium to conduct a form of energy; e.g., electrical conductivity or thermal conductivity. + + + + + Conductivity calculated from the attenuation of an electromagnetic wave. Generally recorded from a LWD resistivity tool. + + + + + Conductivity calculated from the phase shift of an electromagnetic wave. Generally recorded from a LWD resistivity tool. + + + + + The conductivity of the water entrapped in the interstices of the rock. + + + + + The resistivity of the water entrapped in the interstices of the rock. + + + + + Porosity from a measurement made on a conventional core. + + + + + The density of a rock matrix measured on a core sample. + + + + + The permeability derived from a core. + + + + + Porosity from a core measurement. + + + + + A trace which has had corrections applied; e.g. environmental corrections. + + + + + The rate of occurrences; e.g. the far counts from a density tool.. + + + + + The ratio of two count rates. + + + + + The pore volume of a rock calculated from cross plotting two or more well log porosity measurements. + + + + + The time it takes for a population to decay, generally expressed as a half life. + + + + + The conductivity which represents a measurement made several feet into the formation; generally considered a measurement of the undisturbed formation. + + + + + The conductivity, measured by an induction log, which represents a measurement made several feet into the formation; generally considered a measurement of the undisturbed formation. + + + + + The resistivity, measured by an induction log, which represents a measurement made several feet into the formation; generally considered a measurement of the undisturbed formation. + + + + + The conductivity, measured by a laterolog, which represents a measurement made several feet into the formation; generally considered a measurement of the undisturbed formation. + + + + + The resistivity, measured by a laterolog, which represents a measurement made several feet into the formation; generally considered a measurement of the undisturbed formation. + + + + + The resistivity which represents a measurement made several feet into the formation; generally considered a measurement of the undisturbed formation. + + + + + Mass per unit Volume - well logging units are usually gm/cc. + + + + + Porosity calculated using the bulk density measurement from a density log. + + + + + The distance to a point in a wellbore. + + + + + The process of depth correcting a trace by depth matching it to a reference trace. + + + + + The depth calculated from velocity information. + + + + + Departure of a borehole from vertical. Also, the angle measured between the tool axis and vertical. + + + + + Relative permittivity. + + + + + A trace which has been corrected for the effects of diffusion. + + + + + The angle that a structural surface, e.g. a bedding or fault plane, makes with the horizontal, measured perpendicular to the strike of the structure. + + + + + Any of a number of measurements produced by a tool designed to measure formation dip and borehole characteristics through direct and indirect measurements. + + + + + The conductivity, measured by a dipmeter, which represents a measurement made approximately one to two feet into the formation; generally considered to measure the formation where it contains fluids which are comprised primarily of mud filtrate. + + + + + The resistivity, measured by a dipmeter, which represents a measurement made approximately one to two feet into the formation; generally considered to measure the formation where it contains fluids which are comprised primarily of mud filtrate. + + + + + Porosity calculated from an acoustic log using a dolomite matrix. + + + + + Porosity calculated from the bulk density measurement of a density log using a dolomite matrix density. + + + + + Porosity calculated from a neutron log using a dolomite matrix. + + + + + A well log trace which has been corrected or adjusted through an editing process. + + + + + The interconnected pore volume occupied by free fluids. + + + + + The flow of electric charge. + + + + + The difference in electrical energy between two systems. + + + + + The time it takes for an electromagnetic wave to traverse a fixed distance of a given material or matrix. In this case the material or matrix is a specific, zero porosity rock, e.g. sandstone, limestone or dolomite. + + + + + The time it takes for an electromagnetic wave to traverse a fixed distance. + + + + + The elemental composition, generally in weight percent, of a formation as calculated from information obtained from a geochemical logging pass; e.g., weight percent of Al, Si, Ca, Fe, etc. + + + + + The ratio of two different elemental measurements; e.g. K/U. + + + + + A well log trace which has been filtered to improve its value; e.g. inverse filtering for better resolution. + + + + + A well log trace which has had a filter applied to it. + + + + + A logging tool to measure the rate and/or direction of fluid flow in a wellbore. + + + + + The quantity per unit volume of fluid. + + + + + The velocity of a flowing fluid. + + + + + The amount of a fluid resistance to flow. + + + + + The conductivity of the zone immediately behind the mud cake and which is considered to be flushed by mud filtrate, i.e., it is considered to have all mobile formation fluids displaced from it. + + + + + The resistivity of the zone immediately behind the mud cake and which is considered to be flushed by mud filtrate, i.e., it is considered to have all mobile formation fluids displaced from it. + + + + + The fraction or percentage of pore volume of rock occupied by drilling mud or mud filtrate in the flushed zone. + + + + + Energy exerted or brought to bear. + + + + + A trace which has been corrected for formation density effects. + + + + + A trace which has been corrected for formation properties; e.g., salinity. + + + + + A trace which has been corrected for the salinity effects from the water in the formation. + + + + + A trace which has been corrected for formation saturation effects. + + + + + A trace which has been corrected for the effects of the hydrocarbon formation volume factor. + + + + + A trace which has been corrected for the effects of the density of the formation water. + + + + + A trace which has been corrected for water saturation effects. + + + + + The percent of the bulk volume occupied by fluids which are free to flow as measured by the nuclear magnetism log. + + + + + A trace which has been corrected for the effects of friction. + + + + + The measurement of naturally occurring Gamma Ray radiation being released by radioisotopes in clay or other minerals in the formation. + + + + + The measurement of the naturally occurring gamma radiation less the radiation attributed to uranium. + + + + + The fraction or percentage of pore volume of rock occupied by gas. + + + + + The measurement of the average density of fluids in a wellbore. + + + + + A measurement of the conductivity of the formation, by a high frequency electromagnetic tool, within the first few cubic inches of the borehole wall. + + + + + High frequency electromagnetic measurements, e.g. from a dielectric logging tool. + + + + + Porosity calculated using a high frequency electromagnetic measurement as input. + + + + + The amount of change in the phase of a high frequency electromagnetic wave. + + + + + A measurement of the resistivity of the formation, by a high frequency electromagnetic tool, within the first few cubic inches of the borehole wall. + + + + + A trace which has been corrected for the effects of hydrocarbons. + + + + + A trace which has been corrected for the effects of hydrocarbon density. + + + + + A trace which has been corrected for the effects of hydrocarbon gravity. + + + + + The fraction or percentage of pore volume of rock occupied by hydrocarbon. + + + + + A trace which has been corrected for the effects of hydrocarbon viscosity. + + + + + The likeness of an object produced by an electrical device. + + + + + A variable in a well log interpretation equation. + + + + + A trace which has been corrected for the effects of iron in the borehole fluid. + + + + + A well log trace which has had two or more runs spliced together to make a single trace. + + + + + A trace which has been corrected for the effects of KCl in the borehole fluid. + + + + + A measured distance or dimension. + + + + + Porosity calculated from an acoustic log using a limestone matrix. + + + + + Porosity calculated from the bulk density measurement of a density log using a limestone matrix density. + + + + + Porosity calculated from a neutron log using a limestone matrix. + + + + + A trace which has been corrected for lithology effects. + + + + + The permeability derived from a well log. + + + + + The density of a rock matrix used with, or derived from, the bulk density from a well log. The matrix is assumed to have zero porosity. + + + + + The signal measured by a magnetic device at the location of casing collars and other features (e.g., perforations). + + + + + The density of a rock matrix. In this case, the matrix is assumed to have zero porosity. + + + + + The time it takes for an electromagnetic or acoustic wave to traverse a fixed distance of a given material or matrix. In this case the material or matrix is a specific, zero porosity rock, e.g. sandstone, limestone or dolomite. + + + + + The distance measured along the path of a wellbore. + + + + + A well log which uses a mechanical device to measure hole diameter. + + + + + The signal measured by a mechanical device at the location of casing collars and other features (e.g., perforations). + + + + + The conductivity which represents a measurement made approximately two to three feet into the formation; generally considered to measure the formation where it contain fluids which are a mixture of mud filtrate, connate water and possibly hydrocarbons. + + + + + The conductivity, made by an induction log, which represents a measurement made approximately two to three feet into the formation. + + + + + The resistivity, made by an induction log, which represents a measurement made approximately two to three feet into the formation. + + + + + The conductivity, measured by a laterolog, which represents a measurement made approximately two to three feet into the formation. + + + + + The resistivity, measured by a laterolog, which represents a measurement made approximately two to three feet into the formation. + + + + + The resistivity which represents a measurement made approximately two to three feet into the formation; generally considered to measure the formation where it contain fluids which are a mixture of mud filtrate, connate water and possibly hydrocarbons. + + + + + A measurement of the conductivity of the formation within the first few cubic inches of the borehole wall. + + + + + A conductivity measurement made by a micro log tool which measures within the first few cubic inches of the borehole wall. + + + + + A resistivity measurement made by a micro log tool which measures within the first few cubic inches of the borehole wall. + + + + + A measurement of the conductivity of the formation, by a laterolog, within the first few cubic inches of the borehole wall. + + + + + A measurement of the resistivity of the formation, by a laterolog, within the first few cubic inches of the borehole wall. + + + + + A conductivity measurement made by a micro log tool which measures within the first few cubic inches of the borehole wall. + + + + + A resistivity measurement made by a micro log tool which measures within the first few cubic inches of the borehole wall. + + + + + A measurement of the resistivity of the formation within the first few cubic inches of the borehole wall. + + + + + A measurement of the conductivity of the formation, by a spherically focused tool, within the first few cubic inches of the borehole wall. + + + + + A measurement of the resistivity of the formation, by a spherically focused tool, within the first few cubic inches of the borehole wall. + + + + + The mineral composition, generally in weight percent, of a formation as calculated from elemental information obtained from a geochemical logging pass; e.g., weight percent of dolomite, calcite, illite, quartzite, etc. + + + + + The conductivity of the filter cake, the residue deposited on the borehole wall as mud loses filtrate into porous and permeable rock. + + + + + A trace which has been corrected for the effects of mud cake; e.g., mud cake thickness and/or density. + + + + + A trace which has been corrected for the effects of mud cake density. + + + + + The resistivity of the filter cake, the residue deposited on the borehole wall as mud loses filtrate into porous and permeable rock. + + + + + A trace which has been corrected for the effects of mud cake resistivity. + + + + + A trace which has been corrected for the effects of mud cake thickness. + + + + + A trace which has been corrected for the effects of borehole fluid composition; e.g., a correction for KCl in the borehole fluid. + + + + + The conductivity of the continuous phase liquid used for the drilling of the well. + + + + + The conductivity of the effluent of the continuous phase liquid of the drilling mud which permeates porous and permeable rock. + + + + + A trace which has been corrected for the effects of mud filtrate. This includes things such as filtrate salinity. + + + + + A trace which has been corrected for the effects of mud filtrate density. + + + + + The resistivity of the effluent of the continuous phase liquid of the drilling mud which permeates porous and permeable rock. + + + + + A trace which has been corrected for the effects of mud filtrate resistivity. + + + + + A trace which has been corrected for the effects of mud filtrate salinity. + + + + + The resistivity of the continuous phase liquid used for the drilling of the well. + + + + + A trace which has been corrected for the effects of salinity in the borehole fluid. + + + + + A trace which has been corrected for the effects of the viscosity of the borehole fluid. + + + + + A trace which has been corrected for the effects of weighting the borehole fluid. + + + + + The time it takes for a neutron population to die away to half value. + + + + + Porosity from a neutron log. + + + + + A well log which uses a nuclear device to measure hole diameter. + + + + + The decay time of a nuclear magnetic signal. + + + + + The permeability derived from a nuclear magnetism log. + + + + + Porosity calculated using the measurements from a nuclear magnetism logging pass. + + + + + + + + + + Porosity calculated from the bulk density measurement of an open hole density log using a dolomite matrix density. + + + + + Porosity calculated from an open hole neutron log using a dolomite matrix. + + + + + Porosity calculated from the bulk density measurement of an open hole density log using a limestone matrix density. + + + + + Porosity calculated from an open hole neutron log using a limestone matrix. + + + + + + + + + + Porosity calculated from the bulk density measurement of an open hole density log using a sandstone matrix density. + + + + + Porosity calculated from an open hole neutron log using a sandstone matrix. + + + + + A trace which has been corrected for the effects of oil based borehole fluid. + + + + + The fraction or percentage of pore volume of rock occupied by oil. + + + + + The procedure for introducing holes through casing into a formation so that formation fluids can enter into the casing. + + + + + The permeability of the surrounding formation. + + + + + A change or variation according to a harmonic law from a standard position or instant of starting. + + + + + The effect measured by the density log and produced by the process of a photon colliding with an atom, and then being completely absorbed and its total energy used to eject one of the orbital electrons from those surrounding the nucleus. + + + + + The correction that is to be made to the photoelectric absorption curve. + + + + + A trace which has been corrected for various physical measurement effects; e.g. spreading loss. + + + + + An angle formed by two intersecting lines. + + + + + The total pore volume occupied by fluid in a rock. Includes isolated nonconnecting pores and volume occupied by absorbed, immobile fluid. + + + + + A trace which has been corrected for porosity effects. + + + + + The measurement of gamma radiation emitted by potassium. + + + + + The force or thrust exerted upon a surface divided by the area of the surface. + + + + + A trace which has been corrected for the effects of pressure in the borehole. + + + + + A well log trace which has been processed in some way; e.g., depth adjusted or environmentally corrected. + + + + + Porosity calculated from a pulsed neutron log. + + + + + Degree of excellence. + + + + + A relationship between two values usually expressed as a fraction. + + + + + A well log trace which has not had any processing. In other words, a trace which has not been depth adjusted or environmentally corrected. + + + + + While looking down hole, it is the clockwise angle from the upper side of the sonde to the reference pad or electrode. + + + + + The property measuring the resistance to flow of an electrical current. + + + + + A trace which has been corrected for resistivity factor effects. + + + + + Resistivity calculated from the attenuation of an electromagnetic wave. Generally recorded from a LWD resistivity tool. + + + + + Resistivity calculated from the phase shift of an electromagnetic wave. Generally recorded from a LWD resistivity tool. + + + + + The amount of change in the phase of an electrical wave. + + + + + The ratio of two resistivity values. + + + + + The concentration of ions in solution. + + + + + To take a sample of or from something. + + + + + Porosity calculated from an acoustic log using a sandstone matrix. + + + + + Porosity calculated from the bulk density measurement of a density log using a sandstone matrix density. + + + + + Porosity calculated from a neutron log using a sandstone matrix. + + + + + The fraction or percentage of the pore volume of a rock. + + + + + An estimate of the amount of shale present in the formation. Frequently calculated from a gamma ray or SP curve. + + + + + The conductivity which represents a measurement made approximately one to two feet into the formation; generally considered to measure the formation where it contains fluids which are comprised primarily of mud filtrate. + + + + + The conductivity, measured by an induction log, which represents a measurement made approximately one to two feet into the formation; generally considered to measure the formation where it contains fluids which are comprised primarily of mud filtrate. + + + + + The resistivity, measured by an induction log, which represents a measurement made approximately one to two feet into the formation; generally considered to measure the formation where it contains fluids which are comprised primarily of mud filtrate. + + + + + The conductivity, measured by a laterolog, which represents a measurement made approximately one to two feet into the formation; generally considered to measure the formation where it contains fluids which are comprised primarily of mud filtrate. + + + + + The resistivity, measured by a laterolog, which represents a measurement made approximately one to two feet into the formation; generally considered to measure the formation where it contains fluids which are comprised primarily of mud filtrate. + + + + + The resistivity which represents a measurement made approximately one to two feet into the formation; generally considered to measure the formation where it contains fluids which are comprised primarily of mud filtrate. + + + + + Porosity calculated from a shear wave acoustic log using a dolomite matrix. + + + + + Porosity calculated from a shear wave acoustic log using a limestone matrix. + + + + + The time it takes for a shear acoustic wave to traverse a fixed distance of a given material or matrix. In this case the material or matrix is a specific, zero porosity rock, e.g. sandstone, limestone or dolomite. + + + + + Porosity calculated from a shear wave acoustic log using a sandstone matrix. + + + + + The time it takes for a shear acoustic wave to traverse a fixed distance. + + + + + A well log trace which has had its original values shifted by some factor; e.g., added or multiplied by a constant. + + + + + Porosity from a measurement made on a sidewall core. + + + + + The macroscopic capture cross section, i.e. the effective cross-sectional area per unit volume for the capture of neutrons. + + + + + The macroscopic capture cross section, i.e. the effective cross-sectional area per unit volume, of the formation for the capture of neutrons. + + + + + The macroscopic capture cross section, i.e. the effective cross-sectional area per unit volume, of gas for the capture of neutrons. + + + + + The macroscopic capture cross section, i.e. the effective cross-sectional area per unit volume, of hydrocarbon for the capture of neutrons. + + + + + The macroscopic capture cross section, i.e. the effective cross-sectional area per unit volume, of the rock matrix for the capture of neutrons. + + + + + The macroscopic capture cross section, i.e. the effective cross-sectional area per unit volume, of oil for the capture of neutrons. + + + + + The macroscopic capture cross section, i.e. the effective cross-sectional area per unit volume, of water for the capture of neutrons. + + + + + A trace which has been corrected for slippage velocity. + + + + + A well log trace which has been filtered to smooth, or average the trace. + + + + + The measurement of all the naturally occurring gamma radiation separated by energy windows. + + + + + The conductivity, measured by a spherically focused log, which represents the resistivity approximately one to two feet into the formation. + + + + + The resistivity, measured by a spherically focused log, which represents the resistivity approximately one to two feet into the formation. + + + + + The difference in potential (DC Voltage) between a moveable electrode in the borehole and a distant reference electrode usually at the surface. + + + + + A trace which has been corrected for the effects of spreading loss. + + + + + A well log trace which has been artificially created, as opposed to an actual measurement, from associated measurements or information. + + + + + A temperature measurement. + + + + + A trace which has been corrected for the effects of the temperature in the borehole. + + + + + The tension on the wireline cable while logging. + + + + + The ratio of the Thorium measurement to the Potassium measurement. + + + + + The measurement of gamma radiation emitted by thorium. + + + + + A measured or measurable period. + + + + + A trace which has been corrected for the tool diameter. + + + + + A trace which has been corrected for the effects of the tool not being centered in the borehole. + + + + + The measurement of all the naturally occurring gamma radiation. + + + + + The total pore volume occupied by fluid in a rock. + + + + + A well log used for the purpose of monitoring a traceable material; e.g. a radioactive isotope. + + + + + The time it takes for an acoustic or electromagnetic wave to traverse a specific distance. + + + + + The conductivity of fluid-filled rock where fluid distributions and saturations are representative of those in the uninvaded, undisturbed part of the formation. + + + + + The resistivity of fluid-filled rock where fluid distributions and saturations are representative of those in the uninvaded, undisturbed part of the formation. + + + + + The distance along a straight, vertical path. Usually computed from a measured depth and deviation information. + + + + + Porosity calculated from a tube wave acoustic log using a dolomite matrix. + + + + + Porosity calculated from a tube wave acoustic log using a limestone matrix. + + + + + The time it takes for a acoustic tube wave to traverse a fixed distance of a given material or matrix. In this case the material or matrix is a specific, zero porosity rock, e.g. sandstone, limestone or dolomite. + + + + + Porosity calculated from a tube wave acoustic log using a sandstone matrix. + + + + + The time it takes for a tube acoustic wave to traverse a fixed distance. + + + + + The measurement of gamma radiation emitted by uranium. + + + + + directional speed + + + + + cubic capacity + + + + + A trace which has been corrected for the effects of the components in a water based borehole fluid system; e.g., a correction for KCL in the mud. + + + + + A trace which has been corrected for water holdup. + + + + + The conductivity of rock completely saturated with connate water. + + + + + The resistivity of rock completely saturated with connate water. + + + + + The fraction or percentage of pore volume of rock occupied by water. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the type of a message. + + + + + An alarm condition when something has exceeded specified limits + + + + + Information about a specific event + + + + + General information message + + + + + A cautionary message + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + "Text value" indicates that a text value is expected. + "Pressure value" indicates that an equivalentMudWeight value is expected. + "Pressure gradient value" indicates that an equivalentMudWeight value is + commonly expected but a pressureGradient value may also be specified. + "Concentration value" indicates that a concentration value is expected. + "Force value" indicates that a force value is expected. + "Only" indicates that no other value is expected. + + + + + Summarizes basic drilling parameters (or changes) at + specified depth. Text value only. + + + + + Text gives bitname and manufacturer. May have other + bit parameters typical for bit run. Depth recorded at depth bit + run starts. Text value only. + + + + + Text may include casing depth, size and LOT + information. Depth recorded is usually depth of shoe. A top depth + is typically not required as it is usually the rig floor, mud line + or other datum. However a top depth may be required if referenced + to a casing or liner hanger etc Text value only. + + + + + Any general comments pertinent to chromatograph + readings and equipment calibrations, gas reading anomalies, etc. Text value only. + + + + + Text indicating flowchecks, result, kick details, + fluid loss. Any event associated with mud circulation. Text value only. + + + + + Associated text with core interval usually + summarizing core number core, cut, core recovered and percent + recovery. Not meant for core description. Text value only. + + + + + Gas from blendorized cutting samples (possibly + every 30ft). Concentration value only. + + + + + LOT (Leak off) and PIT (Pressure Integrity + Test) Results. Pressure value only. + + + + + Wireline Formation Testing (WFT) pressure (e.g., MDT, RCI, FMT, RFT) as a + gradient. Pressure gradient value only. + + + + + Text comments highlighting anomalies in + data or interpretation of drill data: Hookload/WOB, RPM/Torque, + PumpFlow. Text value only. + + + + + Fracture Pressure Gradient - Most Likely. Pressure gradient value only. + + + + + Text giving gas peak type and magnitude. + Text value only. + + + + + Comments on gas ratio curve data. Text value only. + + + + + Text describes general engineering/drilling + related events Text value only. + + + + + Pressure gradients derived from kicks and flows + while drilling. Pressure gradient value only. + + + + + Lithlog general comments - would typically appear + in 'Remarks' column along with lithologic descriptions. Text value only. + + + + + Pressures gradients derived from lost returns. Pressure gradient value only. + + + + + Data on Logging While Drilling tool failures, + anomalies etc. Text value only. + + + + + Indicates a formation or biostratigraphic + marker etc. - may include name, measured and subsea depth plus two way time. Text value only. + + + + + Comment signifying depth at 00:00 hrs. + Date is usual text. Text value only. + + + + + Mud check parameters and changes. Data will be + key mud information, MWt, PV/YP, Gels, Viscosity etc. May be just + one parameter if change made etc. Text value only. + + + + + Gives text comments on mud weight etc. As opposed + to mud check (see previously). Text value only. + + + + + General mudlog comments that are normally found + in Remarks column with Lith descriptions. May include time / date + / depth mudlogging was commenced or other information. Text value only. + + + + + Overburden Gradient. Pressure gradient value only. + + + + + Amount of hookload overpull on connection + (maximum); Text giving amount of overpull (max) on connections, + trips and other. Text should state type of overpull. Both text and force value. + + + + + Amount of hookload overpull on Trip + (maximum per stand); Text giving amount of overpull (max) + on connections, trips and other. Text should state type of + overpull. Both text and force value. + + + + + Pore Pressure Gradient - Most Likely. Pressure gradient value only. + + + + + Estimates of pore pressure made while drilling. Pressure value only. + + + + + Text comments highlighting anomalies in + data or interpretation. Text value only. + + + + + Text comment highlighting shale density + anomalies. Text value only. + + + + + Text associated with short trip (Wiper Trip) + giving details of type and length of trip. Depth is MD at which short trip is made. Text value only. + + + + + Gives indication of presence of show report + (refers to a separate document). Text value only. + + + + + Associated text for a sidewall core at a + specific depth or a comment associated with a sidewall core program / interval. Text may give SWC number, status, lithology etc. Text value only. + + + + + Interval over which drill bit slides - drilling + with no surface rotation. Usually seen as a symbol with + generally no associated text. + + + + + Text listing steam still result - chromatographic + breakdown of sample from steam still. Text value only. + + + + + Comment in regards to drilling survey; may include + summary of survey data such as direction, dip and azimuth of survey and + measured and TVD depths. Text value only. + + + + + Text giving comments on temperature data and curves. + Text value only. + + + + + Text comments highlighting anomalies in temperature + trend data or interpretation. Text value only. + + + + + List of wireline logging tools run in this job, + usually in run order. Will also include run numbers. Text value only. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + Defines the locations where an equipment tag might be found.. + The list of standard values is contained in the WITSML enumValues.xml file. + + + + + + + + Defines the specifications for creating equipment tags.. + The list of standard values is contained in the WITSML enumValues.xml file. + + + + + + + + Defines the mechanisms for attaching an equipment tag to an item.. + The list of standard values is contained in the WITSML enumValues.xml file. + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + The reason an Optical Time Domain Reflectometry (OTDR) + test was run within a Distributed Temperature Survey (DTS). + + + + + The OTDR was run prior to installing the fiber in the well. + + + + + The OTDR was run after installating the fiber in the + well in order to quality check the installation process. + + + + + The OTDR was run in conjunction with a DTS run. This is + generally immediately preceding the timed run. + + + + + The OTDR was run for another reason. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + That pit in the active pit system located + immediately downstream of the shale shakers, whose primary + purpose is to allow the settling and disposal of the larger + drilled cuttings not removed by the shale shakers. It is + occasionally also called a settling tank. + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the type of coordinate system projection method. + The source (except for "UserDefined") of the values is Geoshare V13. + For a detailed description of each value, see the Geoshare documentation of the + indicated "217" object at http://w3.posc.org/GeoshareSIG/technical/GDM/v13.0/. + + + + + 217-PARAMETERS-PROJECTION-ALBERS + + + + + 217-PARAMETERS-PROJECTION-AZIMUTHAL + + + + + 217-PARAMETERS-PROJECTION-CASSINI + + + + + 217-PARAMETERS-PROJECTION-EQUIDISTANT + + + + + 217-PARAMETERS-PROJECTION-EQUIRECTANGULAR + + + + + 217-PARAMETERS-PROJECTION-GNOMONIC + + + + + 217-PARAMETERS-PROJECTION-LAMBERT-AZIMUTH + + + + + 217-PARAMETERS-PROJECTION-LAMBERT + + + + + 217-PARAMETERS-PROJECTION-MERCATOR + + + + + 217-PARAMETERS-PROJECTION-MILLER + + + + + 217-PARAMETERS-PROJECTION-OBLIQUE-MERCATOR + + + + + 217-PARAMETERS-PROJECTION-ORTHO + + + + + 217-PARAMETERS-PROJECTION-PERSPECTIVE + + + + + 217-PARAMETERS-PROJECTION-POLAR-STEREO + + + + + 217-PARAMETERS-PROJECTION-POLYCONIC + + + + + 217-PARAMETERS-PROJECTION-SINUSOIDAL + + + + + 217-PARAMETERS-PROJECTION-STATE-PLANE + + + + + 217-PARAMETERS-PROJECTION-STEREO + + + + + 217-PARAMETERS-PROJECTION-TM + + + + + 217-PARAMETERS-PROJECTION-UTM + + + + + + + + + + 217-PARAMETERS-PROJECTION-VANDERGRINTEN + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the type of a pump. + + + + + Centrifugal mud pump + + + + + Duplex mud mump, 2 cylinders + + + + + Triplex mud pump, three cylinders + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + The type of qualifier of a lithology. + The list of standard values is contained in the WITSML enumValues.xml file. + + + + + + + + These values represent the name of a recording channel. + The list of standard values is contained in the WITSML enumValues.xml file. + + + + + + + + These values represent the type of drilling rig. + + + + + Barge rig + + + + + Coiled tubing rig + + + + + Floating rig + + + + + Jackup rig + + + + + Land rig + + + + + Fixed platform + + + + + Semisubmersible rig + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + Personnel affected by a risk. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + measurement while drilling or logging while drilling + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Type of slow circulation rate. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + health, safety and environmental + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + Risk Sub-Categories. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Rate of Penetration + + + + + High mud weight (i.e., greater than 10 parts per US gallon). + + + + + + + + + + + + + + + + + + + + Greater than 2 hours. + + + + + + + + + + Greater than 0.5 parts per US gallon. + + + + + + + + + + Greater than ten barrles. + + + + + + + + + + + + + + + + + + + + Greater than 30 minutes. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Greater than 2 hours. + + + + + + + + + + + + + + + + + + + + + + + + + Greater than 1000 feet per day. + + + + + Greater than 2000 feet per day. + + + + + Less than 20 feet per day. + + + + + Greater than 24 hours. + + + + + Bottom Hole Assembly + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Bottom Hole Assembly + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Bottom Hole Assembly + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + health, safety and environmental + + + + + + + + Types of risk. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + Type of slow circulation rate. + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the type of scope of the drilling target. + + + + + Generic 3 dimensional target. Defined by the target. + + + + + + + + + + Elliptical targets. Includes circle (semi-major = semi-minor axis). + Any sections present are ignored. + + + + + Boundary Conditions. Use sections to describe, length and width ignore. + + + + + Includes half circle and polygon. Use sections to describe, length and width ignored. + + + + + Boundary Conditions. Use sections to describe, length and width ignore. + + + + + Line target + + + + + Plane target. Used for horizontal wells. Any sections present are ignored. + + + + + Point Target. Any sections present are ignored. + + + + + Rectangular Targets. Includes square (length = width). Any sections present are ignored. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the type of scope of a section that describes a target. + + + + + continuous curve + + + + + straight line + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the type of a directional survey station. + + + + + Section terminates at a given azimuth on a given plane target, requires target id + + + + + Section follows a given buildrate to a specified delta measured depth + + + + + Section follows a given buildrate to a specified inclination + + + + + Section follows a given buildrate to a specified measured depth + + + + + Section follows a given buildrate and turnrate to a specified azimuth + + + + + Section follows a given buildrate and turnrate to a specified delta measured depth + + + + + Section follows a given buildrate and turnrate to a specified inclination + + + + + Section follows a given buildrate and turnrate to a specified inclination and azimuth + + + + + Section follows a given buildrate and turnrate to a specified measured depth + + + + + Section follows a given buildrate and turnrate to a specified TVD + + + + + Section follows a given buildrate to a specified TVD + + + + + Measured depth casing point, can be inserted within actual survey stations also + + + + + TVD casing point, can be inserted within actual survey stations also + + + + + Section follows a given dogleg severity + + + + + Section follows a given dogleg severity to a specified measured depth and azimuth + + + + + Section follows a given dogleg severity until a specified TVD and Azimuth + + + + + Section follows a given dogleg severity until a specified Inclination + + + + + Section follows a given dogleg severity to a inclination and azimuth + + + + + Section follows a given dogleg severity to a specified measured depth and inclination + + + + + Section follows a given dogleg severity until a specified TVD and Inclination + + + + + Section follows a given dogleg severity to a specified target TVD, NS, EW + + + + + Section follows a given toolface angle and dogleg severity to a specified azimuth + + + + + Section follows a given toolface angle and dogleg severity to a specified delta measured depth + + + + + Section follows a given toolface angle and dogleg severity to a specified inclination + + + + + Section follows a given toolface angle and dogleg severity to a specified inclination and azimuth + + + + + Section follows a given toolface angle and dogleg severity to a specified measured depth + + + + + Section follows a given toolface angle and DLS to a specified TVD + + + + + Measured depth formation, can be inserted within actual survey stations also + + + + + TVD formation, can be inserted within actual survey stations also + + + + + Inertial Gyro + + + + + MWD Gyro measurement + + + + + North seeking gyro + + + + + Section holds angle, azimuth to a specified delta measured depth + + + + + Section holds angle, azimuth to a specified measured depth + + + + + Section holds angle, azimuth to a specified TVD + + + + + Section follows a continuous curve to a specified inclination, azimuth and measured depth + + + + + Magnetic Multi shot + + + + + Measurements while Drilling tool, magnetic + + + + + Magnetic Single shot + + + + + Measured depth marker, can be inserted within actual survey stations also + + + + + TVD marker, can be inserted within actual survey stations also + + + + + Specified as TVD, NS, EW, could be used for point or drilling target (non geological target) + + + + + Specified as TVD, NS, EW of target center, requires target id association + + + + + Specified as TVD, NS, EW of target offset, requires target id association + + + + + Tie in point for the survey + + + + + Section follows a given turn rate to a azimuth + + + + + Section follows a given turn rate to a given delta measured depth + + + + + Section follows a given turn rate to a given measured depth + + + + + Section follows a given turn rate to a given TVD + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + + + + + + + + Drill colllar made from non-magnetic material. + Used to avoid magnetic interference with downhole directional + measurements. + + + + + Drill string component with blades that help + keep the drill string away from the sides of the hole. + + + + + A sub that is used with a downhole motor to + change the direction of the wellbore. It can be adjusted to give + a variable angle of deviation. + + + + + A downhole tool used in conjunction with a jar + that stores energy for rapid release when the jar is fired. + Depending on the operating mode, the energy in tension or + compression is stored by means of a mechanical spring or + compressible fluid such as nitrogen gas. + + + + + A downhole tool that can steer the progress of + the bit by applying forces to the + sides of the hole while drilling with rotating pipe. + + + + + + + + + + A drill string component that has a fixed bend angle. Used in + conjunction with a downhole motor for deviating the wellbore. + + + + + A diamond tipped drill bit used for coring + + + + + Polycrystalline diamond compact core bit. + + + + + Drill bit with cutters containing diamonds. + + + + + Roller cone bit with cutters made from tungsten carbide or other + wear resistant material. + + + + + Roller cone drill bit with steel teeth. + + + + + Polycrystalline diamond compact drill bit. + + + + + Drill string component used to connect the drill bit to the rest of + the string. + + + + + A downhole tool that is located and set to isolate the lower part of + the wellbore. + + + + + A blank end component substituting for a bit, when re entering + an already existing hole to guide the BHA, to avoid inadvertent sidetracks, + such as when run below a hole opener in an existing hole. + + + + + A solid plug used as an isolation device in piping + systems, conduits or wellbore tubulars. + + + + + A spring loaded component used to minimize variations in weight + transfer to the drill bit. + + + + + Tubing used to line the wellbore and protect against pressure + differences between the wellbore fluids and the formation. + + + + + Tool used for cutting through casing. + + + + + Component used to hang a casing string from the well head + at the sea bed. + + + + + Component used to hang casing from a surface location on land or a + fixed platform. + + + + + The adapter between the first casing string and either the BOP stack + (during drilling) or the wellhead (after completion). + + + + + + + + + + + + + + + Component used to allow venting part of the drilling fluids + into the annulus rather than through the bit. + + + + + Section of coiled tubing that is inside the wellbore. + + + + + Section of coiled tubing that is on the coil. + + + + + Strengthened drill pipe. + + + + + + + + + + Tool used with a coring bit to retrieve geological core samples. + + + + + Core barrel used to sample geological cores at a know orientation. + + + + + Sub used to convert from one thread type or size to another. + + + + + Component used to convert between casing threads and/or sizes. + + + + + A sub that controls activation of tools by means of dropping a dart down the + drillstring. + + + + + + + + + + Die collar with left-handed thread. + + + + + A tool that permits control of the drilling direction. + + + + + Heavy pipe without tool joints used to apply weight to the bit. + + + + + Pipe used to convey the drilling assembly to the bottom of the hole. + + + + + Left-handed thread drill pipe + + + + + Bottom Hole Assembly for drill stem testing + + + + + Pipe that is driven into the ground or sea bed to start drilling a well. + + + + + + + + + + A type of overshot tool used in fishing stuck pipe. + + + + + A type of overshot tool used in fishing stuck pipe. + + + + + A short length of casing fitted with a check valve. Prevents + fluids from flowing back up the tubular string. + + + + + A tapered, often bullet-nosed device fitted with a check valve and typically found + at the bottom of a casing string. + + + + + A valve, plunger or flapper, run in a drill collar to prevent + fluid flow and debris into the string while running in hole. Sometime ported + with a small leak path to allow shut in drillpipe pressure readings. + + + + + + + + + + A tapered, often bullet-nosed piece of equipment often found on the bottom of + a casing string. Helps to guide the casing down the center of the hole when a casing string + is being run into the hole. + + + + + Component used for hanging the Measurement While Drilling tool. + + + + + A type of drillpipe whose walls are thicker and collars are longer than + conventional drillpipe. + + + + + Left-handed thread heavy weight drill pipe. + + + + + Marine riser used for deep water or high pressure applications + + + + + Drill bit used for enlarging the hole. + + + + + Expandable device used for packing off or isolating a section of wellbore + used for performing well pressure tests. + + + + + Downhole mud motor that can also take measurements of downhole drilling + parameters. + + + + + Hydraulic or spring-loaded component used to free stuck pipe. + + + + + + + + + + Component used to collect debris from the bottom of the hole. + + + + + Component used to collect debris from the bottom of the hole when + reverse circulating + + + + + Component used to collect debris from the bottom of the hole. + + + + + Hexagonal or square pipe used to rotate the drill string from the rig floor. + + + + + Tool used to open out narrow sections of open hole caused by pipe + friction in tight radius bends. + + + + + A component installed near the bottom of the casing string on which the cement plugs land + during the primary cementing operation. + + + + + Tool run on pipe or wireline to engage the top of a fish, and + enable the condition of the exposed end of the fish to be ascertained from + the pattern in soft lead in the tool. + + + + + Casing or tubing that is hung from the inside of existing casing + rather than from the sea bed or surface. + + + + + Component that is used to hang liner from inside casing. + + + + + Magnet used to retrieve magnetic debris from the hole. + + + + + Large diameter pipe that connects from the sea bed to an offshore rig. + + + + + Milling tool used to dress or clean up pipe that is to be retrieved from the hole. + + + + + Flat bottomed milling tool, used to tidy up the broken end of pipe + stuck in the hole prior to fishing. + + + + + Hollow milling tool + + + + + + + + + + + + + + + Tapered milling tool. + + + + + Large diameter milling tool that goes over the end of stuck pipe. + + + + + + + + + + + + + + + Tool used to hang casing in multi-lateral wellbores. + + + + + + + + + + Downhole tool, usually powered by fluid flow, that rotates the drill bit. + + + + + + + + + + Tool that can take downhole measurements of formation properties and wellbore direction + while drilling. + + + + + Stabilizer that is placed close to the bit + + + + + Stabilizer placed near the bit to provide directional control. + + + + + Stabilizer that does not rotate with the drill string. + + + + + Sub used to orient the drill string for directionla drilling. + + + + + + + + + + Tool used for retrieving pipe that has been lost in the hole. + + + + + Left-handed overshot tool. + + + + + Specific type of overshot tool used for fishing. + + + + + Component that can be inflated so that it seals off a section of the + wellbore, typically for formation testing. + + + + + + + + + + Milling tool used in fishing stuck pipe. + + + + + Tool for cutting through pipe that has become stuck in the hole. + + + + + + + + + + Component with a port or vent tha allows mud to be circulated into the + annulus. + + + + + A type of screen used in sand control applications to support the gravel pack. + + + + + Component used to relieve wellbore pressures. + + + + + Riser pipe used to carry produced fluids. + + + + + Measurement While Drilling component that send encodes downhole data into + hydraulic pulses that can be detected and decoded at the surface. + + + + + + + + + + Component that provides a restriction to mud flow to control + hydraulics. + + + + + Torque Transmission + + + + + A downhole tool that is designed to enable communication between the + tubing internal diameter and the annulus, typically for reverse-circulation purposes + + + + + + A stabilizer that has rotating rollers rather than fixed blades + to reduce friction with the sides of the hole. + + + + + Retrievable packer, designed for testing, treating, and squeezing. + + + + + + + + + + A weak spot in the drillstring so that if tension in the drillstring exceeds a + predetermined amount, the safety joint will part and the rest of the drillstring will be salvageable. + + + + + + Left-handed threaded safety joint providing a + weak spot in the drillstring so that if tension in the drillstring exceeds a + predetermined amount, the safety joint will part and the rest of the drillstring + will be salvageable. + + + + + Component used to reduce wear on the threads of components such as drill bits + that are often re-used. + + + + + + + + + + + + + + + A device for cleaning mud and mud filter cake off of the wellbore + wall when cementing casing in the hole to ensure good contact and bonding between the + cement and the wellbore wall. + + + + + Screw-in casing shoe. + + + + + + + + + + Short drill collar used to adjust the length and spacing of BHA components. + + + + + + + + + + Liner casing that has slots to allow passage of produced fluids. + + + + + Fishing tool that attaches to the inside of the stuck pipe by threads or grapples. + + + + + + + + + + Downhole motor, usually powered by mud flow, that can be steered. + + + + + Retrievable packer, designed for testing, treating, and squeezing. + + + + + + + + + + Pipework that connects the top of the drillstring to the mud pumps. + + + + + Tool used to tap a thread into components that are stuck in the hole. + + + + + Left-handed thread tapping tool. + + + + + Perforating gun that is deployed on the end of a tubular string rather + than a wireline + + + + + Drilling tool used to maintain weight on bit. + + + + + + + + + + Tool used to position a tie-back string of tubing connecting + a liner to the surface. + + + + + Small diameter pipe that is run inside casing or tubing as + part of the well completion. + + + + + Component used to hang tubing inside casing or liner. + + + + + Downhole device used for directional drilling, powered by + mud circulation that rotates the drill + bit while the drill string remains non-rotating + + + + + Component that is run behind the bit and opens out the hole to + a larger diameter. + + + + + Stabilizer with blades that can be adjusted to varying diameters. + + + + + Large diameter pipe with an internal grapple used for retrieving + stuch pipe. + + + + + Milling tool shaped like a watermelon. + + + + + Wedge shaped tool used to drill off in a different direction. + + + + + Anchor device used to position whipstock. + + + + + + + + + + + + + + + Stabilizer with adjustable blades to allow steering the + drilling direction. + + + + + + + + + + + + + + + Milling tool used for cutting through casing. + + + + + Tool used to enlarge the hole. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + Type of direcional survey tool; very generic classification + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + The direction of flow of the fluids in a well facility + (generally, injected or produced, or some combination). + + + + + The well facility alternately injects (usually + a steam or hot fluid) and produces. + + + + + The well facility is injecting fluids into the + subsurface. + + + + + The well facility is producing fluids from the + subsurface. + + + + + The flow direction of the fluids is variable, + but not on a regular basis as is the case with the huff-n-puff + flow. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + The type of fluid being produced from or injected + into a well facility. + + + + + This is generally an injected fluid. + + + + + Liquid hydrocarbons produced with natural gas + that are separated from the gas by cooling and various other means. + Condensate generally has an API gravity of 50 degrees to 120 degrees + and is water white, straw, or bluish in color. It is the liquid + recovery from a well classified as a gas well. It is generally + dissolved in the gaseous state under reservoir conditions but + separates as a liquid either in passing up the hole or at the + surface. These hydrocarbons, from associated and nonassociated + gas well gas, normally are recovered from lease separators or + field facilities by mechanical separation. + + + + + The well facility is classified as a dry well. + It has not been, nor will it be used to produce or inject any fluids. + + + + + The well is classified as a gas well, producing + or injecting a hydrocarbon gas. The gas is generally methane, + but may have a mixture of other gases also. + + + + + The well facility is classified as producing + both gas and water. This classification is to be used when the + produced stream flow is a mixture of gas and water. When a facility + produces gas and water in separate streams, it should be classified + twice as gas and as water. + + + + + The well produces or injects non hydrocarbon + gases. Typical other gases would be helium and carbon dioxide. + + + + + Carbon Dioxide gas. + + + + + The liquid hydrocarbon, generally referred + to as crude oil. + + + + + The well facility is classified as producing + both gas and oil. This classification is to be used when the produced + stream flow is a mixture of oil and gas. When a facility produces + oil and gas in separate streams, it should be classified twice as + oil and as gas. + + + + + The well facility is classified as producing + both oil and water. This classification is to be used when the + produced stream flow is a mixture of oil and water. When a facility + produces oil and water in separate streams, it should be classified + twice as oil and as water. + + + + + The gaseous state of water. This is generally an + injected fluid, but it is possible that some hydrothermal wells + produce steam. + + + + + The well is classified as a water well without + distinguishing between brine or fresh water. + + + + + The well facility is classified as producing + or injecting salt water. + + + + + The well facility is classified as producing + fresh water that is capable of use for drinking or crop irrigation. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the classification of a wellbore + based on its shape. The source of the values and the descriptions is the + POSC V2.2 "facility class" standard instance values in classification system + "POSC wellbore trajectory shape". + + + + + A wellbore configuration where the inclination + is increased to some terminal angle of inclination and maintained + at that angle to the specified target. + + + + + A wellbore that significantly departs from vertical + with respect to the surface location. + + + + + Incorporates two tangential (constant, non-zero + inclination) sections. The second of which must be at a higher + inclination than the first. + + + + + A wellbore whose path deviates from the + vertical by at least 75 degrees. + + + + + A wellbore drilled with a vertical segment, a + deviated segment, and a return toward a vertical segment. + + + + + A wellbore that is nearly vertical with + respect to the surface location. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + The classification of a wellbore with respect to its parent + well/wellbore. + + + + + The original wellbore had to be abandoned before + its final usage. This wellbore is being drilled as a different + wellbore, but one which has the same target as the one that was + abandoned. + + + + + This is the first wellbore that has been + drilled, or attempted, in a given well. + + + + + The wellbore is being redrilled. + + + + + The wellbore is being reentered after a period + of abandonment. + + + + + The wellbore is part of an existing regulatory well. + The original borehole did not reach the target depth. This borehole + required the well to be respudded (drilled from a different surface + position). + + + + + The wellbore is a deviation from a given wellbore, + that produces a different borehole from the others, and whose bottomhole + differs from any previously extisting wellbore bottomholes. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the classification of a well or + wellbore by the purpose for which it was initially drilled. + + + + + A well drilled into a formation shown to be potentially productive of oil or gas by an earlier well for the purpose of obtaining more information about the reservoir. Also known as a delineation well. + + + + + An appraisal well, generally drilled in a location interpreted to be in the reservoir, whose purpose is to confirm the interpretation. + + + + + An appraisal well, generally drilled in an area unknown to be part of the reservoir, whose purpose is to determine the extent of the reservoir. + + + + + An exploratory well drilled in an unproved area to test for a new field, a new pay, a deeper reservoir, or a shallower reservoir. Also known as a wildcat. + + + + + An exploratory well drilled to search for additional pools of hydrocarbon in close proximity to known pools of hydrocarbon but at a deeper stratigraphic levels than the known pools. + + + + + An exploratory well drilled to search for an occurrence of hydrocarbon at a relatively considerable distance outside the limits of known pools of hydrocarbon, as those limits were understood at the time. + + + + + An exploratory well drilled to search for additional pools of hydrocarbon in close proximity and at the same stratigraphic level as known pools. + + + + + An exploratory well drilled to search for additional pools of hydrocarbon or to extend the limits of a known pool by searching in the same interval at some distance from a known pool. + + + + + An exploratory well drilled to search for additional pools of hydrocarbon in close proximity, but at a shallower stratigraphic levels than the known pools. + + + + + A well drilled in a zone in an area already proved productive. + + + + + A development well drilled to fill in between established wells, usually part of a drilling program to reduce the spacing between wells to increase production. + + + + + A development well drilled with the intent of injecting fluids into the reservoir for the purpose of improving reservoir production. + + + + + A development well drilled with the intent of producing fluids. + + + + + A well drilled for storing fluids - generally either hydrocarbons or waste disposal. + + + + + A well drilled with the intent of injecting gas into the reservoir rock as a storage facility. + + + + + A well drilled with the intent of providing a general service as opposed to producing or injecting fluids. Examples of such services are geologic tests, pressure relief (for blowouts), and monitoring and observation. + + + + + A service well drilled to intersect another well below the surface for the purpose of extending the life of a well whose surface borehole has been lost or damaged. + + + + + A service well drilled for the purpose of monitoring fluids in a reservoir, or observing some other subsurface phenomena. Also called a monitor well. + + + + + A service well drilled with the specific purpose to provide communication at some point below the surface to another well which is out of control. + + + + + A well drilled with the purpose of obtaining information on the stratigraphy, on drilling practices, for logging tests, or other such purpose. It is not expected to find economic reserves of hydrocarbons. + + + + + A research well drilled to test the suitablity of a particular type of equipment or drilling practice. + + + + + A research well drilled for the purpose of gathering geologic information on the stratigraphy of an area. A C.O.S.T. well would be included in this category. + + + + + A service well drilled for the purpose of injection of sewage, industrial waste, or other waste fluids into the subsurface for disposal. + + + + + A non-oil and gas E and P well drilled for the purpose of locating and/or extracting a mineral from the subsurface, usually through the injection and/or extraction of mineral-bearing fluids. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + + + These values represent the status of a well or wellbore. + + + + + The status of a facility in which drilling, + completion, and production operations have been permanently + terminated. + + + + + For a well to be active, at least one of its + wellbores must be active. For a wellbore to be active, at least + one of its completions must be actively producing or injecting + fluids. + + + + + Fluids are actively being injected into the + facility. + + + + + Fluids are actively being produced from the + facility. + + + + + The completion has been installed, but the + facility is not yet active. This status is appropriate only + before the initial producing or injecting activity. + + + + + The status of a well or wellbore in which drilling + operations have begun, but are not yet completed. The status ends + when another status becomes appropriate. + + + + + The wellbore has been plugged from the bottom, + but only partially to the point where it intersects another wellbore. + + + + + The facility has received regulatory approvel, + but drilling has not yet commenced. For a well, it has been spudded. + For a subsequent wellbore, the whipstock or similar device has not + yet been set. + + + + + An abandoned well (or wellbore) whose wellbores + have been plugged in such a manner as to prevent the migration of + oil, gas, salt water, or other substance from one stratum to another. + Generally the criteria for this status is controlled by regulatory + authorities. + + + + + The status of a well or wellbore from conception + to either regulatory approval or commencement of drilling. + + + + + The facility has been sold, so it is no longer + appropriate to keep a close internal status value. Status values + may be added at later times without changing the sold status. + + + + + Production or injection has been temporarily + suspended in a manner that will allow immediate resumption of + activities. + + + + + Production or injection has been temporarily + suspended in a manner that will not allow immediate resumption + of activities. + + + + + The facility operations are suspended while + tests are being conducted to determine formation and/or reservoir + properties. For example, a drillstem test. This status also + includes extended testing. + + + + + Information about the status of the well is + confidential. This is more explicit than unknown, since it gives + the reason that the status value is unknown. + + + + + Maintenance or data acquisition on a well during + the production phase. This includes any relevant job which can be + done while the well is shut in. This includes many jobs that occur + when a well is re-entered. + + + + + The value is not known. This value should not be used + in normal situations. All reasonable attempts should be made to determine + the appropriate value. Use of this value may result in rejection in some situations. + + + + + + diff --git a/witsml/1.3.1.1/typ_dataTypes.xsd b/witsml/1.3.1.1/typ_dataTypes.xsd new file mode 100644 index 00000000..1c6d0ab5 --- /dev/null +++ b/witsml/1.3.1.1/typ_dataTypes.xsd @@ -0,0 +1,753 @@ + + + + + + + + + + A union of date and dateTime, so that time is not mandatory. + + + + + + + + + + + + + + + + + + + + + + + A type with a classType attribute. This allows a user to give a + classification of something, and to specify the type of classification that it is. + There is no control over the class values, or the class types. + + + + + + This identifies the classification system to + which the class belongs. + + + + + + + + + + + Values of "true" (or "1") and "false" (or "0"). + + + + + + + A julian date. + + + + + + + A date with the time of day and an optional time zone. + While the time zone is optional, it is strongly advised that the zone + always be specified in each date time value. + + + + + + + A time zone conforming to the dateTime specification. + It should be of the form "Z" or "shh.mm" where + "s" is "+" or "-", + "hh" is 00 to 23 and + "mm" is 00 to 59. + + + + + + + + + A calendar year (CCYY) in the gregorian calendar. + + + + + + + The angle of a Y axis from North. + This is a variation of planeAngleMeasure with an + attribute defining the direction of north. + + + + + + The unit of measure of the azimuth value. + + + + + Specifies the direction to be considered North for the y axis. + + + + + + + + + A volume per volume measure that is constrained to a unit of percent. + + + + + + + + + + + + + + + + + A unitless quantity. This should not + be confused with a dimensionless measure. + + + + + + + A generic measure type. + This should not be used except in situations where the underlying class of data is + captured elsewhere. For example, for a log curve. + + + + + + The unit of measure for the quantity. + The uom is mandatory unless the value represents a unitless quantity. + + + + + + + + + The mnemonic of a log index curve plus + the column index of the curve. + + + + + + The column index of the curve. + + + + + + + + + Representation of a number as a double, possibly qualified as a ratio of doubles. + Ratio component attributes 'numerator' and 'denominator' may be both present or both absent. + When ratio component attributes are present, the ratio represented is to be used with + the double representation included for human readability. + A 'canonical' representation, according to the following rules, is suggested: + Only use numerator/denominator when the representation of the number as double is not + sufficiently precise (i. e. causes errors of accumulation). + Express both numerator and denominator as integers (doubles with integer values) reduced + to 'least common denominator' if possible. + + + + + + The unit of measure for the quantity. + If for some reason a uom is not appropriate for the quantity, + a unit of "Euc" should be used. + + + + + + + + + + + + + A representation of a list of string values, + restricted to strings without embedded whitespace. + + + + + + + + A representation of a list of double values. + + + + + + + + + + A reference to a name in another node of the xml hierachy. + This value represents a foreign key from one element to another. + + + + + + A reference to the unique identifier (uid attribute) in the node + referenced by the name value. + This attribute is required within the context of a WITSML server. + + + + + + + + + A reference to a name in another object. + This value represents a foreign key from one object to another. + Knowledge of the object being referenced is defined by an attribute. + + + + + + The name of the singular object being referenced. + + + + + A reference to the unique identifier (uid attribute) in the object + referenced by the name value. + This attribute is required within the context of a WITSML server. + + + + + + + + + A reference to a index value in another node of the xml hierachy. + This value represents a foreign key from one element to another. + + + + + + A reference to the unique identifier (uid attribute) in the node + referenced by the index value. + This attribute is required within the context of a WITSML server. + + + + + + + + + A reference to a wellDatum in the current well. + This value must match the uid value in a WellDatum. + This value represents a foreign key from one element to another. + This is an exception to the convention that a foreign key must utilize both + a human contextual name and a uid value. For messages outside the context of + a server then this value will commonly match the value of the name of the + wellDatum (e.g., 'KB') if uids are not not used in that context. + This was a compromise in order to allow the coordinate structures to be simple + and still be usable both within the context of a server and outside the context of a server. + + + + + + + + + A user assigned human recognizable contextual name of something. + There should be no assumption that (interoperable) semantic information will be extracted from the name by a third party. + This type of value is generally not guaranteed to be unique and is not a candidate to be replaced by an enumeration. + + + + + + + A comment or remark intended for human consumption. + There should be no assumption that semantics can be extracted from this field by a computer. + Neither should there be an assumption that any two humans will interpret the information + in the same way (i.e., it may not be interoperable). + + + + + + + A textual description of something. + + + + + + + + + A short textual description of something. + + + + + + + + + An encoded value or values. The encoding may utilize + any of several xsd encodings. Something external to the value must + define the encoding. The uom attribute is optional because the value may + be a string or unitless quantity. If the value is a measure then + the uom must be specified. + + + + + + + + + + + A single value. The encoding may utilize + any of several xsd encodings. Something external to the value must + define the encoding. + + + + + + + + + A community assigned human recognizable name. + This type of value is intended to be unique and is generally a candidate to be constrained to an enumerated list. + + + + + + + + A unit of measure acronym from the POSC unit of measure file. + + + + + + + A locally unique identifier. + The value is not intended to convey any semantic content (e.g., it may be computer generated). + The value is only required to be unique within a context in a document (e.g., defined via key and keyref). + There is no guarantee that the same data in multiple documents will utilize the same uid value + unless enforced by the source of the document (e.g., a document server). + + + + + + + A reference to the unique identifier of another element. + This value represents a foreign key from one element to another. + The value should match the value of an attribute of type uidString. + + + + + + + The version of the schema. + The first three levels are fixed. The fourth level can vary + to represent on the constraints defined in enumerations and + XML loader files. + + + + + + + + + + The name of something within a naming system. + + + + + + The naming system within the name is (hopefully) unique. + + + + + + + + + The name of something within a mandatory naming system + with an optional code. + + + + + + The naming system within the name is unique. + + + + + A unique (short) code associated with the name. + + + + + + + + + A textual string that retains all whitespace. + + + + + + + + + IADC bearing wear code: integer 0 - 8 or one of the letters E, F, N or X. . + + + + + + + + + + A geodetic zone with values from 1 to 60 and a required direction + of "N" (North) or "S" (South). For example, "21N". + + + + + + + + + + + + A measured depth coordinate in a wellbore. + Positive moving from the reference datum toward the bottomhole. + All coordinates with the same datum (and same uom) can be considered to be in the same + Coordinate Reference System and are thus directly comparable. + + + + + + The unit of measure of the quantity value. + + + + + A pointer to the reference datum for this coordinate + value as defined in WellDatum. This value is assumed to match the uid + value in a WellDatum. + If not given then the default WellDatum must be assumed. + + + + + + + + + The units of measure that are valid for measured depths in a wellbore. + + + + + meter + + + + + International Foot + + + + + US Survey Foot + + + + + + + + A vertical (gravity based) depth coordinate within the context of a well. + Positive moving downward from the reference datum. + All coordinates with the same datum (and same uom) can be considered to be in the same + Coordinate Reference System and are thus directly comparable. + + + + + + The unit of measure of the quantity value. + + + + + A pointer to the reference datum for this coordinate + value as defined in WellDatum. + If not given then the default WellDatum must be assumed. + + + + + + + + + A vertical (gravity based) elevation coordinate within the context of a well. + Positive moving upward from the reference datum. + All coordinates with the same datum (and same uom) can be considered to be in the same + Coordinate Reference System and are thus directly comparable. + + + + + + The unit of measure of the quantity value. + If not given then the default unit of measure of the explicitly + or implicitly given datum must be assumed. + + + + + A pointer to the reference datum for this coordinate + value as defined in WellDatum. + If not given then the default WellDatum must be assumed. + + + + + + + + + The units of measure that are valid for vertical gravity based + coordinates (i.e., elevation or vertical depth) within the context of a well. + + + + + meter + + + + + International Foot + + + + + US Survey Foot + + + + + British Foot 1865 + + + + + + + + + + A non-negative integer (zero based count or index) with a maximum value of 32767 (2-bytes). + For items that represent "number of" something or a "sequential" count or index. + + + + + This value can be zero but cannot be negative. + + + + + + + + A positive integer (one based count or index). + + + + + This value cannot be negative or zero. + + + + + + + + A large positive integer (one based count or index) with a maximum value of 2,147,483,647 (4-bytes). + + + + + This value cannot be negative or zero. + + + + + + + + A positive or negative count with a maximum positive value of 2147483647 (4-bytes). + + + + + + + An estimate wind strength based on the Beaufort Wind Scale. + Values range from 0 (calm) to 12 (hurricane). + + + + + + + + + + Pump Action: 1 = Single acting, 2 = double acting. + + + + + + + + + + IADC codes: 0 to 8. + + + + + + + + + + Integer level code from 1 through 5. + + + + + + + + + + + + + + + + + + + + + + + Indexes things with the same name. + That is the first one, the second one, etc. + + + + + + + + + + + + + + + + + + + + + + + + + + + + diff --git a/witsml/1.3.1.1/typ_measureType.xsd b/witsml/1.3.1.1/typ_measureType.xsd new file mode 100644 index 00000000..3789ce44 --- /dev/null +++ b/witsml/1.3.1.1/typ_measureType.xsd @@ -0,0 +1,317 @@ + + + + + These types represent numeric quantities with a unit of measure implemented as a uom attribute. The units are gathered into single quantity class which represents a group of units. The unit symbols appropriate for the class are captured as enumerated lists. The implementation of this is to develop a type for each uom class that is a union of a standard list, the unknown value, and the Other: extension. Additional files will contain these structures. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + diff --git a/witsml/1.3.1.1/typ_quantityClass.xsd b/witsml/1.3.1.1/typ_quantityClass.xsd new file mode 100644 index 00000000..d546e593 --- /dev/null +++ b/witsml/1.3.1.1/typ_quantityClass.xsd @@ -0,0 +1,774 @@ + + + + This file defines a set of standard POSC units of measure + for various quantity classes. This units list captures information contained + in the POSC units dictionary at http://www.posc.org/refs/poscUnits20.xml. + The enumerated lists do not contain any deprecated units. + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + diff --git a/xlinks.xsd b/xlinks.xsd new file mode 100644 index 00000000..324b6ce8 --- /dev/null +++ b/xlinks.xsd @@ -0,0 +1,124 @@ + + + + + xlinks.xsd v3.0b2 2001-07 + + GML 3.0 candidate xlinks schema. Copyright (c) 2001 OGC, All Rights Reserved. + + + + + + + + + + + + + + The 'show' attribute is used to communicate the desired presentation + of the ending resource on traversal from the starting resource; it's + value should be treated as follows: + new - load ending resource in a new window, frame, pane, or other + presentation context + replace - load the resource in the same window, frame, pane, or + other presentation context + embed - load ending resource in place of the presentation of the + starting resource + other - behavior is unconstrained; examine other markup in the + link for hints + none - behavior is unconstrained + + + + + + + + + + + + + + + + The 'actuate' attribute is used to communicate the desired timing + of traversal from the starting resource to the ending resource; + it's value should be treated as follows: + onLoad - traverse to the ending resource immediately on loading + the starting resource + onRequest - traverse from the starting resource to the ending + resource only on a post-loading event triggered for + this purpose + other - behavior is unconstrained; examine other markup in link + for hints + none - behavior is unconstrained + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + diff --git a/xml.xsd b/xml.xsd new file mode 100644 index 00000000..aea7d0db --- /dev/null +++ b/xml.xsd @@ -0,0 +1,287 @@ + + + + + + +
+

About the XML namespace

+ +
+

+ This schema document describes the XML namespace, in a form + suitable for import by other schema documents. +

+

+ See + http://www.w3.org/XML/1998/namespace.html and + + http://www.w3.org/TR/REC-xml for information + about this namespace. +

+

+ Note that local names in this namespace are intended to be + defined only by the World Wide Web Consortium or its subgroups. + The names currently defined in this namespace are listed below. + They should not be used with conflicting semantics by any Working + Group, specification, or document instance. +

+

+ See further below in this document for more information about how to refer to this schema document from your own + XSD schema documents and about the + namespace-versioning policy governing this schema document. +

+
+
+
+
+ + + + +
+ +

lang (as an attribute name)

+

+ denotes an attribute whose value + is a language code for the natural language of the content of + any element; its value is inherited. This name is reserved + by virtue of its definition in the XML specification.

+ +
+
+

Notes

+

+ Attempting to install the relevant ISO 2- and 3-letter + codes as the enumerated possible values is probably never + going to be a realistic possibility. +

+

+ See BCP 47 at + http://www.rfc-editor.org/rfc/bcp/bcp47.txt + and the IANA language subtag registry at + + http://www.iana.org/assignments/language-subtag-registry + for further information. +

+

+ The union allows for the 'un-declaration' of xml:lang with + the empty string. +

+
+
+
+ + + + + + + + + +
+ + + + +
+ +

space (as an attribute name)

+

+ denotes an attribute whose + value is a keyword indicating what whitespace processing + discipline is intended for the content of the element; its + value is inherited. This name is reserved by virtue of its + definition in the XML specification.

+ +
+
+
+ + + + + + +
+ + + +
+ +

base (as an attribute name)

+

+ denotes an attribute whose value + provides a URI to be used as the base for interpreting any + relative URIs in the scope of the element on which it + appears; its value is inherited. This name is reserved + by virtue of its definition in the XML Base specification.

+ +

+ See http://www.w3.org/TR/xmlbase/ + for information about this attribute. +

+
+
+
+
+ + + + +
+ +

id (as an attribute name)

+

+ denotes an attribute whose value + should be interpreted as if declared to be of type ID. + This name is reserved by virtue of its definition in the + xml:id specification.

+ +

+ See http://www.w3.org/TR/xml-id/ + for information about this attribute. +

+
+
+
+
+ + + + + + + + + + +
+ +

Father (in any context at all)

+ +
+

+ denotes Jon Bosak, the chair of + the original XML Working Group. This name is reserved by + the following decision of the W3C XML Plenary and + XML Coordination groups: +

+
+

+ In appreciation for his vision, leadership and + dedication the W3C XML Plenary on this 10th day of + February, 2000, reserves for Jon Bosak in perpetuity + the XML name "xml:Father". +

+
+
+
+
+
+ + + +
+

About this schema document

+ +
+

+ This schema defines attributes and an attribute group suitable + for use by schemas wishing to allow xml:base, + xml:lang, xml:space or + xml:id attributes on elements they define. +

+

+ To enable this, such a schema must import this schema for + the XML namespace, e.g. as follows: +

+
+          <schema . . .>
+           . . .
+           <import namespace="http://www.w3.org/XML/1998/namespace"
+                      schemaLocation="http://www.w3.org/2001/xml.xsd"/>
+     
+

+ or +

+
+           <import namespace="http://www.w3.org/XML/1998/namespace"
+                      schemaLocation="http://www.w3.org/2009/01/xml.xsd"/>
+     
+

+ Subsequently, qualified reference to any of the attributes or the + group defined below will have the desired effect, e.g. +

+
+          <type . . .>
+           . . .
+           <attributeGroup ref="xml:specialAttrs"/>
+     
+

+ will define a type which will schema-validate an instance element + with any of those attributes. +

+
+
+
+
+ + + +
+

Versioning policy for this schema document

+
+

+ In keeping with the XML Schema WG's standard versioning + policy, this schema document will persist at + + http://www.w3.org/2009/01/xml.xsd. +

+

+ At the date of issue it can also be found at + + http://www.w3.org/2001/xml.xsd. +

+

+ The schema document at that URI may however change in the future, + in order to remain compatible with the latest version of XML + Schema itself, or with the XML namespace itself. In other words, + if the XML Schema or XML namespaces change, the version of this + document at + http://www.w3.org/2001/xml.xsd + + will change accordingly; the version at + + http://www.w3.org/2009/01/xml.xsd + + will not change. +

+

+ Previous dated (and unchanging) versions of this schema + document are at: +

+ +
+
+
+
+ +
+