FIRE Cirrus on October 28, 1986: LANDSAT; ER-2; King Air; theory
Bruce A. Wielicki, John T. Suttles, Andrew J. Heymsfield, Ronald M. Welch, James D. Spinhirne, Lindsay Parker, Robert F. Arduini
Abstract
Bruce A. Wielicki, John T. Suttles, Andrew J. Heymsfield, Ronald M. Welch, James D. Spinhirne, Lindsay Parker, Robert F. Arduini
Abstract
A simultaneous examination was conducted of cirrus clouds in the FIRE Cirrus IFO-I on 10/28/86 using a multitude of remote sensing and in-situ measurements. The focus is cirrus cloud radiative properties and their relationship to cloud microphysics. A key element is the comparison of radiative transfer model calculations and varying measured cirrus radiative properties (emissivity, reflectance vs. wavelength, reflectance vs. viewing angle). As the number of simultaneously measured cloud radiative properties and physical properties increases, more sharply focused tests of theoretical models are possible.
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A simultaneous examination was conducted of cirrus clouds in the FIRE Cirrus IFO-I on 10/28/86 using a multitude of remote sensing and in-situ measurements. The focus is cirrus cloud radiative properties and their relationship to cloud microphysics. A key element is the comparison of radiative transfer model calculations and varying measured cirrus radiative properties (emissivity, reflectance vs. wavelength, reflectance vs. viewing angle). As the number of simultaneously measured cloud radiative properties and physical properties increases, more sharply focused tests of theoretical models are possible.
Key concepts: Cirrus, Radiative transfer, Emissivity, Remote sensing, Environmental science, Cloud computing, Atmospheric sciences, Meteorology