Physically based modeling and animation of fire

Author:

Nguyen Duc Quang1,Fedkiw Ronald1,Jensen Henrik Wann2

Affiliation:

1. Stanford University and Industrial Light + Magic

2. Stanford University

Abstract

We present a physically based method for modeling and animating fire. Our method is suitable for both smooth (laminar) and turbulent flames, and it can be used to animate the burning of either solid or gas fuels. We use the incompressible Navier-Stokes equations to independently model both vaporized fuel and hot gaseous products. We develop a physically based model for the expansion that takes place when a vaporized fuel reacts to form hot gaseous products, and a related model for the similar expansion that takes place when a solid fuel is vaporized into a gaseous state. The hot gaseous products, smoke and soot rise under the influence of buoyancy and are rendered using a blackbody radiation model. We also model and render the blue core that results from radicals in the chemical reaction zone where fuel is converted into products. Our method allows the fire and smoke to interact with objects, and flammable objects can catch on fire.

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design

Reference32 articles.

1. Two dimensional Visual Simulation of Flames, Smoke and the Spread of Fire;CHIBA N.;The Journal of Visualization and Computer Animation,1994

2. Realistic visualisation of the Pompeii frescoes

3. FAIRCHILD M. 1998. Color Appearance Models. Addison Wesley Longman Inc. FAIRCHILD M. 1998. Color Appearance Models. Addison Wesley Longman Inc.

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