diff --git a/src_test/test_rte_rrtmgp_bw.cu b/src_test/test_rte_rrtmgp_bw.cu index 4929e12..ef57947 100644 --- a/src_test/test_rte_rrtmgp_bw.cu +++ b/src_test/test_rte_rrtmgp_bw.cu @@ -927,19 +927,19 @@ void solve_radiation(int argc, char** argv) Array dist_cam_cpu(dist_cam); Array zen_cam_cpu(zen_cam); - auto nc_var_liwp = output_nc.add_variable("liq_ice_wp_cam", {"y","x"}); + auto nc_var_liwp = output_nc.add_variable("liq_ice_wp_cam", {"y","x"}); nc_var_liwp.insert(liwp_cam_cpu.v(), {0, 0}); nc_var_liwp.add_attribute("long_name", "accumulated liquid+ice water path"); - auto nc_var_tauc = output_nc.add_variable("tau_cld_cam", {"y","x"}); + auto nc_var_tauc = output_nc.add_variable("tau_cld_cam", {"y","x"}); nc_var_tauc.insert(tauc_cam_cpu.v(), {0, 0}); nc_var_tauc.add_attribute("long_name", "accumulated cloud optical depth (441-615nm band)"); - auto nc_var_dist = output_nc.add_variable("dist_cld_cam", {"y","x"}); + auto nc_var_dist = output_nc.add_variable("dist_cld_cam", {"y","x"}); nc_var_dist.insert(dist_cam_cpu.v(), {0, 0}); nc_var_dist.add_attribute("long_name", "distance to first cloudy cell"); - auto nc_var_csza = output_nc.add_variable("zen_cam", {"y","x"}); + auto nc_var_csza = output_nc.add_variable("zen_cam", {"y","x"}); nc_var_csza.insert(zen_cam_cpu.v(), {0, 0}); nc_var_csza.add_attribute("long_name", "zenith angle of camera pixel"); }