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A contact algorithm for voxel-based meshes using an implicit boundary representation

机译:基于隐式边界表示的基于体素的网格的接触算法

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摘要

Numerical methods operating on structured grids have become popular since they offer good run time performance and are able to process directly voxel-based digital data from image recordings. Hence, the general framework of these fast solvers presupposes an unfitted boundary approximation avoiding complicated meshing of bodies. This allows an efficient handling with geometrical issues. Nevertheless, contacts between deformable solids are hard to deal with in the presence of this boundary representation. For this difficulty we suggest the usage of an implicit boundary representation combined with a modified saddle point formulation, resembling Nitsche's approach. Both ideas give an elegant approach for discretizing the contact terms and enable a simple contact detection. Moreover, we suggest an intermediate surface as new reference contact area which fits well into our proposed method. In the end we present numerical results and analyze the accuracy and convergence rate. Furthermore, we demonstrate the current application range of our approach for problems with multiple contacts. In this paper we focus only on frictionless contact with small deformations. (C) 2019 The Author(s). Published by Elsevier B.V.
机译:在结构化网格上运行的数字方法已变得流行,因为它们具有良好的运行时性能,并且能够直接处理来自图像记录的基于体素的数字数据。因此,这些快速求解器的总体框架以不适合的边界近似为前提,从而避免了复杂的物体啮合。这样可以有效处理几何问题。然而,在存在这种边界表示的情况下,可变形实体之间的接触很难处理。对于这个困难,我们建议使用隐式边界表示与修改后的鞍点公式相结合,类似于Nitsche的方法。两种想法都提供了一种精巧的方法来离散联系条款,并实现简单的联系检测。此外,我们建议将中间表面作为新的参考接触区域,该区域非常适合我们提出的方法。最后,我们给出了数值结果并分析了准确性和收敛速度。此外,我们演示了我们的方法在多触点问题上的当前应用范围。在本文中,我们仅关注具有小变形的无摩擦接触。 (C)2019作者。由Elsevier B.V.发布

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