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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Hexahedral Mesh Matching: Converting non-conforming hexahedral-to-hexahedral interfaces into conforming interfaces
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Hexahedral Mesh Matching: Converting non-conforming hexahedral-to-hexahedral interfaces into conforming interfaces

机译:六面体网格匹配:将不合格的六面体到六面体接口转换为合格的接口

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摘要

This paper presents a new method, called Mesh Matching, for handling non-conforming hexahedral-to-hexahedral interfaces for finite element analysis. Mesh Matching modifies the hexahedral element topology on one or both sides of the interface until there is a one-to-one pairing of finite element nodes, edges and quadrilaterals on the interface surfaces, allowing mesh entities to be merged into a single conforming mesh. Element topology is modified using hexahedral dual operations, including pillowing, sheet extraction, dicing and column collapsing. The primary motivation for this research is to simplify the generation of unstructured all-hexahedral finite element meshes. Mesh Matching relaxes global constraint propagation which currently hinders hexahedral meshing of large assemblies, and limits its extension to parallel processing. As a secondary benefit, by providing conforming mesh interfaces, Mesh Matching provides an alternative to artificial constraints such as tied contacts and multi-point constraints. The quality of the resultant conforming hexahedral mesh is high and the increase in number of elements is moderate. Copyright (C) 2009 John Wiley & Sons, Ltd.
机译:本文提出了一种称为网格匹配的新方法,用于处理不合格的六面体到六面体界面,以进行有限元分析。网格匹配会修改界面一侧或两侧的六面体元素拓扑,直到界面表面上的一对一的有限元节点,边和四边形成对,从而允许将网格实体合并为单个一致的网格。使用六面体双重操作修改了元素拓扑,包括枕形,工作表提取,切块和列折叠。这项研究的主要动机是简化非结构化全六面体有限元网格的生成。网格匹配放宽了全局约束传播,该约束当前阻碍了大型装配体的六面体网格划分,并将其扩展范围限制为并行处理。作为第二个好处,通过提供一致的网格接口,网格匹配提供了人工约束(如束缚接触和多点约束)的替代方法。生成的贴合六面体网格的质量很高,元素数量的增加适中。版权所有(C)2009 John Wiley&Sons,Ltd.

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