基于可变形简单复合体的拓扑自适应界面跟踪

M. Misztal, J. A. Bærentzen
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引用次数: 66

摘要

我们提出了一种新颖的拓扑自适应的可变形界面跟踪方法,称为可变形简单复合体(DSC)。在DSC方法中,界面被明确地表示为分段线性曲线(2D)或曲面(3D),这是空间离散化(三角化/四面体化)的一部分,这样界面就可以被检索为一组将标记为内部的三角形/四面体与标记为外部的三角形/四面体分开的面(因此它也是隐式给出的)。这种表示允许鲁棒的拓扑自适应,并且由于接口的显式表示,它只受到数值扩散的轻微影响。此外,使用非结构化网格产生鲁棒的自适应分辨率。此外,在这种设置中,拓扑控制也很简单。我们在几个例子中展示了该方法的优点:简单的几何流动、流体模拟、点云重建和切割轨迹构建。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Topology-adaptive interface tracking using the deformable simplicial complex
We present a novel, topology-adaptive method for deformable interface tracking, called the Deformable Simplicial Complex (DSC). In the DSC method, the interface is represented explicitly as a piecewise linear curve (in 2D) or surface (in 3D) which is a part of a discretization (triangulation/tetrahedralization) of the space, such that the interface can be retrieved as a set of faces separating triangles/tetrahedra marked as inside from the ones marked as outside (so it is also given implicitly). This representation allows robust topological adaptivity and, thanks to the explicit representation of the interface, it suffers only slightly from numerical diffusion. Furthermore, the use of an unstructured grid yields robust adaptive resolution. Also, topology control is simple in this setting. We present the strengths of the method in several examples: simple geometric flows, fluid simulation, point cloud reconstruction, and cut locus construction.
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