NASA NTRS ยท 19900034621
Monitoring global land surface using Nimbus-7 37 GHz data - Theory and examples
Abstract
Simplified radiative transfer models for 37 GHz brightness temperatures are developed and applied to observations taken with the Nimbus-7 scanning multichannel microwave radiometer. It is found that, as the vegetation density increases, polarization difference decreases. The polarization difference also decreases with increasing surface roughness. Empirical relations are established between the satellite observations and annual rainfall over Africa and Australia, primary productivity, and actual evaporation. Color-coded maps of primary productivity and evaporation are presented.
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Choudhury, Bhaskar J.. 1989-10-01. Monitoring global land surface using Nimbus-7 37 GHz data - Theory and examples. https://ntrs.nasa.gov/citations/19900034621
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