Applied Optics · 1968 · 181 citations · 6 references
The scattering of visible light by clouds is calculated from an efficient Monte Carlo code which follows the multiple scattered path of the photon. The single scattering function is obtained from the Mie theory by integration over a particle size distribution appropriate for cumulus clouds at 0.7-micro wavelength. The photons are followed through a sufficient number of collisions and reflections from the lower surface (which may have any desired albedo) until they make a negligible contribution to the intensity. Various variance reduction techniques are used to improve the statistics. The cloud albedo and the mean optical path of the transmitted and reflected photons are given as a function of the solar zenith angle, optical thickness, and surface albedo. The numerous small angle scatterings of the photon in the direction of the incident beam are followed accurately and produce a greater penetration into the cloud than is obtained with a more isotropic and less realistic phase function.
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Electromagnetic Scattering from Absorbing Spheres
George W. Kattawar, Gilbert N. Plass · Applied Optics · 1967 · 152 citations · Full text
Illuminance and Luminance under Overcast Skies
Sigmund Fritz · Journal of the Optical Society of America · 1955 · 43 citations
Light Scattering by Cloud Layers
S. Twomey, H. Jacobowitz, H. B. Howell · Journal of the Atmospheric Sciences · 1967 · 38 citations