Efficient rendering of atmospheric phenomena

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Publication Type Journal Article
School or College College of Engineering
Department Computing, School of
Creator Hansen, Charles D.
Other Author Riley, Kirk; Ebert, David S.; Martin, Kraus; Tessendorf, Jerry
Title Efficient rendering of atmospheric phenomena
Date 2004
Description Rendering of atmospheric bodies involves modeling the complex interaction of light throughout the highly scattering medium of water and air particles. Scattering by these particles creates many well-known atmospheric optical phenomena including rainbows, halos, the corona, and the glory. Unfortunately, most radiative transport approximations in computer graphics are ill-suited to render complex angularly dependent effects in the presence of multiple scattering at reasonable frame rates. Therefore, this paper introduces a multiple-model lighting system that efficiently captures these essential atmospheric effects. We have solved the rendering of fine angularly dependent effects in the presence of multiple scattering by designing a lighting approximation based upon multiple scattering phase functions. This model captures gradual blurring of chromatic atmospheric optical phenomena by handling the gradual angular spreading of the sunlight as it experiences multiple scattering events with anisotropic scattering particles. It has been designed to take advantage of modern graphics hardware; thus, it is capable of rendering these effects at near interactive frame rates.
Type Text
Publisher Eurographics Association
First Page 375
Last Page 386
Language eng
Bibliographic Citation Riley, K., Ebert, D. S., Martin, K., Tessendorf, J., & Hansen, C. D. (2004). Efficient rendering of atmospheric phenomena. Eurographics Symposium on Rendering, 375-86.
Rights Management (c)Eurographics Association
Format Medium application/pdf
Format Extent 1,389,997 bytes
Identifier ir-main,14636
ARK ark:/87278/s6w09q4g
Setname ir_uspace
ID 703432
Reference URL https://collections.lib.utah.edu/ark:/87278/s6w09q4g