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Computer Graphics Volume 18, Number 3 July 1984 RAY …

    https://courses.cs.duke.edu/spring03/cps296.8/papers/RayTracingVolumeDensities.pdf
    RAY TRACING VOLUME DENSITIES James T. Kajiya Brian P. Von Herren California Institute of Technology Pasadena, Calif ABSTRACT This paper presents new algorithms to trace objects represented by densities within a volume grid, e.g. clouds, fog, flames, dust, particle systems.

[PDF] Ray tracing volume densities | Semantic Scholar

    https://www.semanticscholar.org/paper/Ray-tracing-volume-densities-Kajiya-Herzen/1daaace5526aeec3c2e099a5f2431ba48a2a43c0
    Ray tracing volume densities J. Kajiya, B. V. Herzen Published 1 January 1984 Environmental Science Proceedings of the 11th annual conference on Computer graphics and interactive techniques This paper presents new algorithms to trace objects represented by densities within a volume grid, e.g. clouds, fog, flames, dust, particle systems.

(PDF) Ray tracing volume densities | Brian Herzen

    https://www.academia.edu/3406868/Ray_tracing_volume_densities
    Computer Graphics Volume18, Number 3 July 1984 i RAY TRACING VOLUME DENSITIES James T. Kajiya Brian P. Von Herren California Institute of Technology Pasadena, Calif ABSTRACT This paper presents new algorithms to trace his models to more general shapes.

Ray tracing volume densities - CaltechAUTHORS

    https://authors.library.caltech.edu/71848/
    Ray tracing volume densities Kajiya, James T. and Von Herzen, Brian P. (1984) ... James T. Kajiya and Brian P Von Herzen. 1984. Ray tracing volume densities. In Proceedings of the 11th annual conference on Computer graphics and interactive techniques (SIGGRAPH '84), Hank Christiansen (Ed.). ACM, New York, NY, USA, 165-174.

Ray tracing volume densities | Proceedings of the 11th annual ...

    https://dl.acm.org/doi/abs/10.1145/800031.808594
    Home Conferences SIGGRAPH Proceedings SIGGRAPH '84 Ray tracing volume densities. Article . ... Authors: James T. Kajiya. California Institute of Technology, Pasadena, Calif ...

(PDF) Ray tracing volume densities" computer graphics 18

    https://www.researchgate.net/publication/242588930_Ray_tracing_volume_densities_computer_graphics_18
    RAY TRACING VOLUME DENSITIES James T. Kajiya Brian P. Von Herren California Institute of Technology Pasadena, Calif ABSTRACT This paper presents new algorithms to trace objects represented by...

(PDF) Ray Tracing Volume Densities - researchgate.net

    https://www.researchgate.net/publication/234800181_Ray_Tracing_Volume_Densities
    RAY TRACING VOLUME DENSITIES James T. Kajiya Brian P. Von Herren California Institute of Technology Pasadena, Calif ABSTRACT This paper presents new algorithms to trace objects represented by...

Ray tracing volume densities | ACM SIGGRAPH Computer …

    https://dl.acm.org/doi/10.1145/964965.808594
    Abstract. This paper presents new algorithms to trace objects represented by densities within a volume grid, e.g. clouds, fog, flames, dust, particle systems. We develop the light scattering equations, discuss previous methods of solution, and present a new approximate solution to the full three-dimensional radiative scattering problem suitable ...

(~ Computer Graphics, Volume 23, Number 3, July 1989

    https://www.cs.drexel.edu/~david/Classes/CS586/Papers/p271-kajiya.pdf
    amenable to ray tracing. It is not clear whether texels can be made compatible with the radiosity approach to image synthesis. Texels In Kajiya and Von Herzeu(1984) it was suggested that volume densities were potentially capable of rendering many complex objects beyond

Error in equation 2.1. in Ray Tracing Volume Densities

    https://computergraphics.stackexchange.com/questions/12674/error-in-equation-2-1-in-ray-tracing-volume-densities
    I am reading through Kajiya - Ray Tracing Volume Densities paper. And I've already got stuck into section 2. I wonder if there's a mistake in that equation. I'll quote the relevant bit. The quantity to be calculated in a scattering problem is the energy per unit solid angle per unit area $$ dE = I(x,\omega)\sin\vartheta d\omega d\sigma $$ This quantity is called the intesity of radiation at …

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