基于质心材料的非均质材料高效自适应有限元分析

M. Guan, Z. Xuan
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引用次数: 0

摘要

自适应有限元分析的一个问题是,尽管其收敛速度高于非自适应计算,但与均匀精细化网格法相比,它需要更多的迭代才能达到所需的解精度。为了提高分析效率和减少每次迭代的计算时间,我们开发了一种简单的质心材料法,而不是在形成单元刚度矩阵时对每个单元进行积分。线性有限元法利用质心材料来近似单元的材料,不需要对每个单元进行积分,从而将有限元模型简化为由材料均匀的单元组成的模型。与高斯正交法相比,表明了该方法在计算和实现上的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Efficient Adaptive Finite Element Analysis of Heterogeneous Materials Based on Centroid Material
One problem with the adaptive finite element analysis is that it needs more iterations, compared with the uniformly refined mesh method, to reach the desired accuracy of the solutions, although its convergence rate is higher than that of non adaptive computing. In order to improve the efficiency of the analysis and reduce the time for computing in each iteration, we develop a simple centroid material method instead of the integral on each element in forming the element stiffness matrix. There is no time needed for the integral on each element in linear finite element method, because the centroid material is used to approximate the material of the element, and then the finite element model is simplified as one consists of elements with homogeneous material. The efficiency of the method in both computing and implementation is shown as compared with the Gauss quadrature.
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