Effects of high altitude clouds on the earth's infrared radiation flux
W.-C. Wang, L. D. Kaplan
Abstract
W.-C. Wang, L. D. Kaplan
Abstract
Attention is given to the results of a study of cirrus cloud properties which employed the Goddard Laboratory for Atmospheric Sciences' general circulation model and concentrated on the effects of the nonblackness of high clouds on the IR radiation flux. Although the thermal radiation flux is very sensitive to the treatment of cirrus optical properties in the IR, a more realistic assessment will depend on better parameterizations for cirrus cloud formation, persistence, and dissipation.
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Attention is given to the results of a study of cirrus cloud properties which employed the Goddard Laboratory for Atmospheric Sciences' general circulation model and concentrated on the effects of the nonblackness of high clouds on the IR radiation flux. Although the thermal radiation flux is very sensitive to the treatment of cirrus optical properties in the IR, a more realistic assessment will depend on better parameterizations for cirrus cloud formation, persistence, and dissipation.
Key concepts: Cirrus, Flux (metallurgy), Infrared, Atmospheric sciences, Radiation, Effects of high altitude on humans, Radiation flux, Environmental science