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NASA NTRS · 20110012471

Hyperspectrally-Resolved Surface Emissivity Derived Under Optically Thin Clouds

Abstract

Surface 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.

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BibTeXRIS

Zhou, Daniel K., Larar, Allen M., Liu, Xu, Smith, William L., Strow, L. Larrabee, Yang, Ping. 2010-06-22. Hyperspectrally-Resolved Surface Emissivity Derived Under Optically Thin Clouds. https://ntrs.nasa.gov/citations/20110012471

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