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Real-time physical deformation and cutting of heterogeneous objects via hybrid coupling of meshless approach and finite element method

机译:通过无网格方法和有限元方法的混合耦合实时对异质物体进行物理变形和切割

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This paper advocates a method for real-time physical deformation and arbitrary cutting simulation of heterogeneous objects with multi-material distribution, whose originality centers on the tight coupling of domain-specific finite element method (FEM) and material distance-aware meshless approach in a CUDA-centric parallel simulation framework. We employ hierarchical hexahedron serving as basic building blocks for accurate material-aware FEM simulation. Meanwhile, local meshless systems are designed to support cross-FEM-domain coupling and material-sensitive propagation while respecting the regularity of finite elements. Directly benefiting from the structural regularity and uniformity of finite elements, our hybrid solution enables the local stiffness matrix pre-computation and dynamic assembling, adaptive topological updating and precise cutting reconstruction. Moreover, our mathematically-rigorous solver guarantees unconditional stableness. Experiments demonstrate the superiorities of our system. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:本文提出了一种具有多种材料分布的异质物体实时物理变形和任意切削模拟的方法,其创新之处在于领域有限元方法(FEM)与材料距离感知无网格方法的紧密耦合。以CUDA为中心的并行仿真框架。我们采用分层六面体作为基本构建块,以进行精确的材料感知有限元模拟。同时,设计本地无网格系统以支持跨FEM域耦合和材料敏感的传播,同时尊重有限元的规则性。我们的混合解决方案直接受益于有限元的结构规则性和均匀性,可实现局部刚度矩阵的预计算和动态组装,自适应拓扑更新和精确的切削重建。此外,我们严格的数学求解器保证了无条件的稳定性。实验证明了我们系统的优越性。版权所有(c)2014 John Wiley&Sons,Ltd.

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