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Multimaterial Mesh-Based Surface Tracking

delete2014-07-27
delete54
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OA
AI
F
Fang Da *
C
Christopher Batty
E
Eitan Grinspun
DOI:10.1145/2601097.2601146delete
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摘要

摘要

En 中文
We present a triangle mesh-based technique for tracking the evolution of three-dimensional multimaterial interfaces undergoing complex deformations. It is the first non-manifold triangle mesh tracking method to simultaneously maintain intersection-free meshes and support the proposed broad set of multimaterial remeshing and topological operations. We represent the interface as a non-manifold triangle mesh with material labels assigned to each half-face to distinguish volumetric regions. Starting from proposed application-dependent vertex velocities, we deform the mesh, seeking a non-intersecting, watertight solution. This goal necessitates development of various collision-safe, label-aware non-manifold mesh operations: multimaterial mesh improvement; T1 and T2 processes, topological transitions arising in foam dynamics and multiphase flows; and multimaterial merging, in which a new interface is created between colliding materials. We demonstrate the robustness and effectiveness of our approach on a range of scenarios including geometric flows and multiphase fluid animation.
Keyword:
surface tracking
topology change
multimaterial flows
nonmanifold meshes
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期刊

ACM Transactions on Graphics 封面图
ACM Transactions on Graphics
IF:
9.5
论文数:
4.7K
被引数:
3.6W

机构

C
Columbia University
学者数:
7.1W
论文数: 6.4W
被引数: 263
U
University of Waterloo
学者数:
2.2W
论文数: 2.3W
被引数: 3.3W