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Rigid fluid

Published: 31 July 2015 Publication History

Abstract

We present a framework for modeling solid-fluid phase change. Our framework is physically-motivated, with geometric constraints applied to define rigid dynamics using shape matching. In each simulation step, particle positions are updated using an extended SPH solver where they are treated as fluid. Then a geometric constraint is computed based on current particle configuration, which consists of an optimal translation and an optimal rotation. Our approach differs from methods such as [Carlson et al. 2004] in that we solve rigid dynamics by using a stable geometric constraint [Müller et al. 2005] embedded in a fluid simulator.

References

[1]
Carlson, M., Mucha, P. J., and Turk, G. 2004. Rigid fluid: Animating the interplay between rigid bodies and fluid. In ACM SIGGRAPH 2004 Papers, ACM, New York, NY, USA, SIGGRAPH '04, 377--384.
[2]
Müller, M., Heidelberger, B., Teschner, M., and Gross, M. 2005. Meshless deformations based on shape matching. In ACM SIGGRAPH 2005 Papers, ACM, New York, NY, USA, SIGGRAPH '05, 471--478.

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cover image ACM Conferences
SIGGRAPH '15: ACM SIGGRAPH 2015 Posters
July 2015
95 pages
ISBN:9781450336321
DOI:10.1145/2787626
Permission to make digital or hard copies of part or all of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for third-party components of this work must be honored. For all other uses, contact the Owner/Author.

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Association for Computing Machinery

New York, NY, United States

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Published: 31 July 2015

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