通过布尔运算实现可变形切割的通用扩展有限元法

IF 2.7 4区 计算机科学 Q2 COMPUTER SCIENCE, SOFTWARE ENGINEERING Computer Graphics Forum Pub Date : 2024-10-17 DOI:10.1111/cgf.15184
Q. M. Ton-That, P. G. Kry, S. Andrews
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引用次数: 0

摘要

传统的基于网格的可变形体切割方法依赖于通过删除、复制、变形或细分网格元素来修改模拟网格。遗憾的是,这种拓扑变化最终会导致不稳定、精度降低或计算效率降低等问题。因此,最先进的算法倾向于采用扩展有限元法 (XFEM),该方法将切割几何与模拟网格分离开来,只需在切割区域局部增加计算成本,即可实现稳定而精确的切割。然而,在三维环境中,当前的 XFEM 框架受到其支持的切割配置的限制。特别是,相交切割要么被禁止,要么需要复杂的特殊处理。我们的研究提出了一种通用的 XFEM 公式,它适用于一维、二维和三维环境,且不会牺牲该方法的理想特性。特别是,我们提出了一种广义的富集方法,利用最近在鲁棒网格布尔技术方面取得的进展,支持不同非线性程度的多重相交切分。这种新颖的策略还能实现计算质量、力和弹性能量所需的解析非连续积分方案。我们着重介绍了我们的 XFEM 实现在各种情景下的简易性、表现力和准确性,这些情景都以相交切割模式为特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Generalized eXtended Finite Element Method for Deformable Cutting via Boolean Operations

Traditional mesh-based methods for cutting deformable bodies rely on modifying the simulation mesh by deleting, duplicating, deforming or subdividing its elements. Unfortunately, such topological changes eventually lead to instability, reduced accuracy, or computational efficiency challenges. Hence, state of the art algorithms favor the extended finite element method (XFEM), which decouples the cut geometry from the simulation mesh, allowing for stable and accurate cuts at an additional computational cost that is local to the cut region. However, in the 3-dimensional setting, current XFEM frameworks are limited by the cutting configurations that they support. In particular, intersecting cuts are either prohibited or require sophisticated special treatment. Our work presents a general XFEM formulation that is applicable to the 1-, 2-, and 3-dimensional setting without sacrificing the desirable properties of the method. In particular, we propose a generalized enrichment which supports multiple intersecting cuts of various degrees of non-linearity by leveraging recent advances in robust mesh-Boolean technology. This novel strategy additionally enables analytic discontinuous integration schemes required to compute mass, force and elastic energy. We highlight the simplicity, expressivity and accuracy of our XFEM implementation across various scenarios in which intersecting cutting patterns are featured.

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来源期刊
Computer Graphics Forum
Computer Graphics Forum 工程技术-计算机:软件工程
CiteScore
5.80
自引率
12.00%
发文量
175
审稿时长
3-6 weeks
期刊介绍: Computer Graphics Forum is the official journal of Eurographics, published in cooperation with Wiley-Blackwell, and is a unique, international source of information for computer graphics professionals interested in graphics developments worldwide. It is now one of the leading journals for researchers, developers and users of computer graphics in both commercial and academic environments. The journal reports on the latest developments in the field throughout the world and covers all aspects of the theory, practice and application of computer graphics.
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