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The zonal method for calculating light intensities in the presence of a participating medium
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Source International Conference on Computer Graphics and Interactive Techniques archive
Proceedings of the 14th annual conference on Computer graphics and interactive techniques table of contents
Pages: 293 - 302  
Year of Publication: 1987
ISBN:0-89791-227-6
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Authors
Holly E. Rushmeier  Cornell Univ., Ithaca, NY
Kenneth E. Torrance  Cornell Univ., Ithaca, NY
Sponsor
SIGGRAPH: ACM Special Interest Group on Computer Graphics and Interactive Techniques
Publisher
ACM  New York, NY, USA
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Downloads (6 Weeks): 3,   Downloads (12 Months): 54,   Citation Count: 46
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ABSTRACT

The zonal method for calculating radiative transfer in the presence of a participating medium is applied to the generation of realistic synthetic images. The method generalizes the radiosity method and allows for emission, scattering, and absorption by a participating medium. The zonal method accounts for volume/surface interactions which have not been previously included, as well as volume/volume and surface/surface interactions. In addition, new algorithms, based on the hemi-cube formulation, are introduced for calculating the geometric factors required by the zonal method.


REFERENCES

Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.

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Glassner, Andrew S. Space Subdivision for Fast Ray Tracing. IEEE Computer Graphics and Applications 4, I0 (October 1984), 15-22.
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Hottel, Hoyt C., and Adel F. Saroflm, Radiative Transfer. McGraw-Hill, New York, New York, 1967.
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Rushmeler, Holly E. Extending the Radiosity Method to Transmitting and Specularly Reflecting Surfaces. Masters Thesis, Cornell University, 1986.
 
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CITED BY  46

Collaborative Colleagues:
Holly E. Rushmeier: colleagues
Kenneth E. Torrance: colleagues