作者: Ronald R. Fairbanks
DOI:
关键词: Parametrization (atmospheric modeling) 、 Radiance 、 Atmospheric correction 、 Remote sensing 、 Cloud computing 、 Environmental science 、 Meteorology 、 Radiative transfer 、 Modular design 、 Cloud cover 、 Atmospheric radiative transfer codes
摘要: Abstract : Atmospheric correction and subsequent chlorophyll detection algorithms via remote sensing means were designed for use over the world's oceans. The seem to fail when used on data taken Laurentian Great Lakes. Two primary reasons failure have been identified as higher suspended minerals in Lakes than oceans normally cloud cover A characterization of impact clouds radiance reaching platforms has performed. From this characterization, calculated content determined by current is derived. work presented here describes creation an end-to-end radiative transfer model complete sun-air-water-air-detector system application that perform characterization. modular; modules relate each propagation/scattering regime. Existing computer codes required accuracy resolution could be met. module particular represents advance methods found literature.