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A new parameterization of an empirical model for wind/ocean scatterometry

Authors :
Woiceshyn, P. M
Wurtele, M. G
Boggs, D. H
Mcgoldrick, L. F
Peteherych, S
Source :
NASA. Marshall Space Flight Center Frontiers of Remote Sensing of the Oceans and Troposphere from Air and Space Platforms.
Publication Year :
1984
Publisher :
United States: NASA Center for Aerospace Information (CASI), 1984.

Abstract

The power law form of the SEASAT A Scatterometer System (SASS) empirical backscatter-to-wind model function does not uniformly meet the instrument performance over the range 4 to 24 /ms. Analysis indicates that the horizontal polarization (H-Pol) and vertical polarization (V-Pol) components of the benchmark SASS1 model function yield self-consistent results only for a small mid-range of speeds at larger incidence angles, and for a somewhat larger range of speeds at smaller incidence angles. Comparison of SASS1 to in situ data over the Gulf of Alaska region further underscores the shortcomings of the power law form. Finally, a physically based empirical SASS model is proposed which corrects some of the deficiencies of power law models like SASS1. The new model allows the mutual determination of sea surface wind stress and wind speed in a consistent manner from SASS backscatter measurements.

Details

Language :
English
Database :
NASA Technical Reports
Journal :
NASA. Marshall Space Flight Center Frontiers of Remote Sensing of the Oceans and Troposphere from Air and Space Platforms
Notes :
NAS7-918
Publication Type :
Report
Accession number :
edsnas.19840019201
Document Type :
Report