Constraint relation implementation for finite element analysis from an element basis

San-Cheng Chang, Tsung-Wu Lin
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引用次数: 13

Abstract

A procedure for implementing constraint relations among finite element nodal degrees of freedom is outlined. Rather than imposing the constraint relations on the global stiffness or mass matrix as the conventional approach, this procedure is based on the element formulation level in that the element matrices and vectors are properly converted to account for the effect of constraint relations before the global assemblage phase. Adjustment of the global matrix profile for constraint relations and matrix pivoting in equation solving are thus avoided, and the approach can be easily incorporated into existing program systems. In this paper, the theoretical treatment for the proposed procedure is given, and the software implementation aspects are also discussed.

基于单元的有限元分析约束关系实现
给出了有限元节点自由度约束关系的实现过程。与传统方法在整体刚度或质量矩阵上施加约束关系不同,该方法基于单元公式级别,在整体装配阶段之前适当转换单元矩阵和向量以考虑约束关系的影响。从而避免了在求解方程时对约束关系全局矩阵轮廓的调整和矩阵的旋转,并且该方法可以很容易地集成到现有的程序系统中。本文对所提出的程序进行了理论处理,并对软件实现方面进行了讨论。
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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