Hyperspectrally-Resolved Surface Emissivity Derived Under Optically Thin CloudsSurface spectral emissivity derived from current and future satellites can and will reveal critical information about the Earth s ecosystem and land surface type properties, which can be utilized as a means of long-term monitoring of global environment and climate change. Hyperspectrally-resolved surface emissivities are derived with an algorithm utilizes a combined fast radiative transfer model (RTM) with a molecular RTM and a cloud RTM accounting for both atmospheric absorption and cloud absorption/scattering. Clouds are automatically detected and cloud microphysical parameters are retrieved; and emissivity is retrieved under clear and optically thin cloud conditions. This technique separates surface emissivity from skin temperature by representing the emissivity spectrum with eigenvectors derived from a laboratory measured emissivity database; in other words, using the constraint as a means for the emissivity to vary smoothly across atmospheric absorption lines. Here we present the emissivity derived under optically thin clouds in comparison with that under clear conditions.
Document ID
20110012471
Acquisition Source
Langley Research Center
Document Type
Abstract
Authors
Zhou, Daniel K. (NASA Langley Research Center Hampton, VA, United States)
Larar, Allen M. (NASA Langley Research Center Hampton, VA, United States)
Liu, Xu (NASA Langley Research Center Hampton, VA, United States)
Smith, William L. (Hampton Univ. VA, United States)
Strow, L. Larrabee (Maryland Univ. Baltimore County Baltimore, MD, United States)
Yang, Ping (Texas A&M Univ. College Station, TX, United States)
Date Acquired
September 8, 2013
Publication Date
June 22, 2010
Subject Category
Meteorology And Climatology
Report/Patent Number
NF1676L-10271Report Number: NF1676L-10271
Meeting Information
Meeting: 2010 Western Pacific Geophysics Meeting (WPGM 2010)