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2024

  • E. Buckley, M.-L. Timmermans, and M. M. Wilhelmus, “Seasonal Evolution of the Sea Ice Floe Size Distribution from Two Decades of MODIS Data,” 2024 Ocean Science meeting, February 19–23, New Orleans, Louisiana, USA
  • Haris, R., M. Gupta, S. Gering, & A.F. Thompson. Surface ocean momentum transfer in sea ice covered regions: The role of floe-scale dynamics. Ocean Sciences Meeting February 2024, New Orleans, LA, Paper #PS42A-07
  • G. Manucharyan, K. Shrestha and A. Thompson, “Response of Submesoscale Variability Under Sea Ice to Wind Bursts and Mesoscale Strain,” 2024 Ocean Science meeting, February 19–23, New Orleans, Louisiana, USA
  • B. Montemuro and G. Manucharyan, “The role of islands in the summer breakup of sea ice arches in Nares Strait,” 2024 Ocean Science meeting, February 19–23, New Orleans, Louisiana, USA
  • K. Matuska, G. Manucharyan, B. Montemuro, and M.-L. Timmermans, “Modeling inertial oscillations of Arctic sea ice,” 2024 Ocean Science meeting, February 19–23, New Orleans, Louisiana, USA
  • Dimitris Giannakis, AMS Annual Meeting (Feb. 2024), Characterizing Persistent Cycles and Trends of Climate Dynamics with Operator-Theoretic Techniques
  • M. Kim, G. Manucharyan, M.M. Wilhelmus (2024) “Inferring ocean eddy energetics leveraging Lagrangian observation of ice floes in the Beaufort Gyre,” 2024 Ocean Science meeting, February 19–23, New Orleans, Louisiana, USA
  • Stechmann SN, Scientific Computing Seminar, National University of Singapore. (January 2024) Multi-scale models for Arctic sea ice: Toward a kinetic theory viewpoint

2023

  • Buckley E, Horvat C, Flocco D, Wilhelmus MM (2023) “Arctic Sea Ice Melt Pond Properties from High-resolution Airborne Data”, American Geophysical Union Annual Meeting, San Francisco, CA
  • Dimitris Giannakis, AGU Fall Meeting (Dec. 2023), Operator-Theoretic Approaches to Data Assimilation and Dynamical Closure
  • Dimitris Giannakis, AGU Fall Meeting (Dec. 2023), Characterizing Subseasonal to Multidecadal Climate Variability with Operator-Theoretic Techniques
  • Kim, M, Covington J, Montemuro B, Chen N, Manucharyan G, and Wilhelmus MM (2023) “Inferring ocean eddy characteristics leveraging Lagrangian observation of ice floes in the Beaufort Gyre” American Geophysical Union Annual Meeting, San Francisco, CA
  • Kim M, Manucharyan G, and Wilhelmus MM (2023) “Revealing the kinematic link between Arctic Ocean eddies and sea ice: inferring eddy characteristics from Lagrangian observations of ice motion”, 75th Annual Meeting of the American Physical Society Division of Fluid Dynamics, Washington, DC
  • Mohammad Javad Latifi, Dimitris Giannakis, International Congress on Computational Mechanics (July 2023), Kernel Methods for Discrete to Continuum Interpolation in Sea Ice Models
  • Stechmann SN, International Union of Geodesy and Geophysics, Session on Data-Driven Cryospheric Sciences. Berlin, Germany. (July 2023) Superfloe parameterization with physics constraints for data assimilation and uncertainty quantification of sea ice floes
  • Watkins DM, Buckley E, Kim M, Paniagua C, Divoll T, Restrepo MI, and Wilhelmus MM (2023) “Ice Floe Tracker: An Open-Source Tool Enabling Novel Observations of Sea Ice Motion from Visual Remote Sensing Imagery”, American Geophysical Union Annual Meeting, San Francisco, CA
  • Watkins, D.M., Wilhelmus, M.M., Buckley, E., & Kim, M. (2023) “A new sea ice drift product for optical remote sensing imagery,” International Glaciological Society Sea Ice Symposium, Bremerhaven, Germany
  • Watkins DM, Bliss AC, Hutchings JK, and Wilhelmus MM (2023) “Sea ice dynamical response to small and medium scale ocean currents”, 75th Annual Meeting of the American Physical Society Division of Fluid Dynamics, Washington, DC
  • Wilhelmus MM, Jet Propulsion Laboratory (Mar. 2023), Tracing the New Arctic
  • Wilhelmus MM, Guggenheim Aeronautical Laboratory, California Institute of Technology (Mar. 2023), Tracing the New Arctic
  • Wilhelmus MM, Earth System Science, Stanford University (Mar. 2023), Tracing the New Arctic

2022

  • Wilhelmus MM, Institute for Mathematical and Statistical Innovation, University of Chicago (Dec. 2022), Tracing the New Arctic
  • Buckley E, Wilhelmus MM (Dec. 2022) Examining the Relationship between Sea Ice Dynamics and Floe Characteristics in the Marginal Ice Zone, Bulletin of the American Geophysical Union Annual Fall Meeting, Chicago, IL.
  • Covington J, Chen N, Wilhelmus MM (Dec. 2022) Bridging Gaps in the Climate ObservationNetwork: A Physics-based Nonlinear Dynamical Interpolation of Lagrangian Ice Floe Measurements via Data-Driven Stochastic Models, Bulletin of the American Geophysical Union Annual Fall Meeting, Chicago, IL
  • Kim M, Convington J, Montemuro B, Manucharyan G, Chen N, Wilhelmus MM (Dec. 2022) Synthesis of MODIS Satellite Imagery, Sea Ice Tracking, and Ocean Turbulence Model for Characterizing Arctic Ocean Eddies, Bulletin of the American Geophysical Union Annual Fall Meeting, Chicago, IL.
  • Newcomb B, Kim M, Timmermans M-L, Wilhelmus MM (Dec. 2022) Surface drifter and sea ice observations for characterizing mesoscale eddies in the Arctic Ocean, Bulletin of the American Geophysical Union Annual Fall Meeting, Chicago, IL.
  • Watkins D, Bliss A, Hutchings J, Wilhelmus MM (Dec. 2022) Sea Ice Dynamics in the East Greenland Sea Marginal Ice Zone During Summer, Bulletin of the American Geophysical Union Annual Fall Meeting, Chicago, IL
  • Stechmann SN, Oberwolfach Math Research Institute, Germany. Workshop on Mathematical Advances in Geophysical Fluid Dynamics. (Nov. 2022) Multi-scale modeling of Arctic sea ice and floes
  • Kim M, Montemuro B, Convington J, Manucharyan G, Chen N, Wilhelmus MM (Nov. 2022) A new framework to characterize Arctic Ocean eddies leveraging Lagrangian observations of sea ice, Bulletin of the American Physical Society Division of Fluid Dynamics 75th Annual Meeting, Indianapolis, IN
  • Wilhelmus MM (Nov. 2022) Tracing the New Arctic: Is drifting sea ice a vorticity meter of the ocean?, Bulletin of the American Physical Society Division of Fluid Dynamics 75th Annual Meeting, Indianapolis, IN.
  • Wilhelmus MM, Center for Environmental and Applied Fluid Mechanics, Johns Hopkins University (Oct. 2022), Tracing the New Arctic
  • Deng, Q., ANU Mathematics and Computational Sciences Seminar (Aug. 2022), Superparameterisation of Arctic sea ice floes
  • Stechmann SN, British Antarctic Survey, University of Cambridge. (June 2022) Multi-scale modeling of Arctic sea ice and floes
  • Davis, A.D., Giannakis, D., Stechmann, S., and Stadler G., European Congress on Computational Methods in Applied Sciences and Engineering (June 2022), Generalization of hydrodynamic sea ice dynamics using kinetic theory and the Boltzmann equation
  • Stechmann SN, Isaac Newton Institute for Mathematical Sciences, University of Cambridge. Programme on Frontiers in Kinetic Theory. (May 2022) Multi-scale models for Arctic sea ice: Toward a kinetic theory viewpoint
  • Wilhelmus, M.M., Lopez-Acosta, R., and Manucharyan, G., MIT (Mar. 2021), Tracing the New Arctic
  • Wilhelmus, M.M., Lopez-Acosta, R., Hutchings, J., and Bliss, A., Bulletin of the Ocean Sciences Meeting (Feb. 2022), Retrieving the characteristics of oceanic turbulence from sea ice dispersion metrics
  • Covington, J., Chen, N., Wilhelmus, M.M., and Lopez-Acosta, R., Bulletin of the Ocean Sciences Meeting (Feb. 2022), Estimating missing observations of ice floes using data assimilation
  • Manucharyan, G., Lopez-Acosta, R., and Wilhelmus, M.M., Bulletin of the Ocean Sciences Meeting (Feb. 2022), Spinning ice floes reveal intensication of mesoscale eddies in the western Arctic Ocean
  • Gupta, M., Thompson A.F., Los Alamos National Laboratory: Climate, Ocean and Sea Ice Modeling (Jan. 2022), Melting dynamics of Lagrangian sea-ice floes: ice/ocean coupling at the sub-mesoscales

2021

  • Davis, A.D., Giannakis, D., Stechmann, S., and Stadler G., American Geophysical Union, (Dec. 2021), Generalization of hydrodynamic sea ice dynamics using kinetic theory and the Boltzmann equation
  • Lopez, R. and Wilhelmus, M.M., Bulletin of the American Physical Society Division of Fluid Dynamics 74th Annual Meeting, (Nov. 2021), Sea ice dispersion mirrors underlying submesoscale ocean currentsamid strong atmospheric forcing
  • Wilhelmus, M.M., Lopez-Acosta, R., and Manucharyan, G., CalTech (Oct. 2021), Tracing the New Arctic
  • Denton, A.D. and Timmermans, M.-L., Society for Industrial and Applied Mathematics Annual Meeting 2021, (July 2021), Characterizing the Sea-Ice Floe Size Distribution Across a Range of Settings from High-Resolution Optical Satellite Imagery
  • Dinh H., Giannakis, D., Stadler, G., and Slawinska, J., American Geophysical Union, (Dec. 2021), Machine Learning on Phase-Field Models of Sea Ice Fracture
  • Davis, A.D., Giannakis, D., Stadler, G., Stechmann, S., and Manucharyan, G., Scientific Computing Seminar, Durham University (Feb. 2021), Super-parameterized numerical methods for the Boltzmann equation modeling Arctic sea ice dynamics
  • Giannakis, D., Davis, A.D., Stadler, G., Stechmann, S., and Manucharyan, G., CalTech (Jan. 2021), Kinetic Theory for Superparameterization of Sea Ice Dynamics
  • Manucharyan, G. E., Lopez-Acosta, R., and Martinez, M., (Feb. 2021) University of South Florida, College of Marine Science, "Emerging Arctic Ocean turbulence revealed by rotating sea ice fragments" [video]
  • Dinh, H., Giannakis, D., Stadler, G., Slawinska, J., SIAM Annaual Meeting 2021, virtual meeting (July 2021), Machine learning on phase-field models of sea ice fracture

2020

  • Davis, A.D., Giannakis, D., Stadler, G., Stechmann, S., and Manucharyan, G., American Geophysical Union (Dec. 2020), Super-parameterization of Lagrangian sea ice dynamics using the Boltzmann equation
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