有限元法自适应重划分过程的二维网格生成方案

A. Tezuka
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引用次数: 5

摘要

整个区域的离散化是有限元方法的前提。由于手工网格生成过程繁琐,近年来人们对网格生成方案进行了研究。在迭代分析中,每次迭代都会极大地改变域的几何形状。已知网格再生消除了几何变化引起的网格畸变,这极大地影响了整个分析的收敛性。如果在网格再生中额外考虑分析中的误差控制,则该过程应是自适应的;可靠的解决方案需要自适应网格划分。有许多可用的网格生成器,然而,它们中的大多数需要与用户交互,因此不能用于自适应网格划分。本文详细讨论了一种用于二维有限元自适应网格划分的复杂网格生成方案。通过与其他方案的比较,我们的方案在灵活性和时间复杂度方面都优于其他方案。
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2D mesh generation scheme for adaptive remeshing process in finite element method
The discretization of a whole domain is a prerequisite process for Finite Element Method (FEM). Since manual mesh generation is tedious, mesh generation schemes have been studied in recent years. In iterative analyses, the geometry of the domain is drastically changed by each iteration. It is known that mesh regeneration eliminates mesh distortion caused by the geometry change, which greatly affects the convergence of the whole analysis. If error control in the analysis is additionally considered in the mesh regeneration, such a process should be adaptive ; adaptive remeshing is required for a reliable solution. There are many mesh generators available, however, most of them require interaction with the user, and thus cannot be used for adaptive remeshing. In this paper, a sophisticated mesh generation scheme for the adaptive remeshing in the 2D FEM is discussed in detail. After comparison with other schemes, it is concluded that our scheme is superior to the others in terms of flexibility and time complexity.
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