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タイトルSurface Turbulent Fluxes Over Pack Ice Inferred from TOVS Observations
本文(外部サイト)http://hdl.handle.net/2060/19980018307
著者(英)Rothrock, D. A.; Lindsay, R. W.; Schweiger, A. J.; Persson, P. O. G.; Francis, J. A.
著者所属(英)Washington Univ.
発行日1996-05-09
言語eng
内容記述A one-dimensional, atmospheric boundary layer model is coupled to a thermodynamic ice model to estimate the surface turbulent fluxes over thick sea ice. The principal forcing parameters in this time-dependent model are the air temperature, humidity, and wind speed at a specified level (either at 2 m or at 850 mb) and the downwelling surface radiative fluxes. The free parameters. are the air temperature, humidity, and wind speed profiles below the specified level, the surface skin temperature, the ice temperature profile, and the surface turbulent fluxes. The goal is to determine how well we can estimate the turbulent surface heat and momentum fluxes using forcing parameters from atmospheric temperatures and radiative fluxes retrieved from the TIROS-N Operational Vertical Sounder (TOVS) data. Meteorological observations from the Lead Experiment (LeadEx, April 1992) ice camp are used to validate turbulent fluxes computed with the surface observations and the results are used to compare with estimates based on radio-sonde observations or with estimates based on TOVS data. We find that the TOVS-based estimates of the stress are significantly more accurate than those found with a constant geostrophic drag coefficient, with a root-mean-square error about half as large. This improvement is due to stratification effects included in the boundary layer model. The errors in the sensible heat flux estimates, however, are large compared to the small mean values observed during the field experiment.
NASA分類Earth Resources and Remote Sensing
レポートNONASA/CR-96-207150
NAS 1.26:207150
権利No Copyright


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