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Iterative mesh partitioning optimization for parallel nonlinear dynamic finite element analysis with direct substructuring

机译:直接子结构的并行非线性动力有限元分析的迭代网格划分优化

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摘要

This work presents a novel iterative approach for mesh partitioning optimization to promote the efficiency of parallel nonlinear dynamic finite element analysis with the direct substructure method, which involves static condensation of substructures' internal degrees of freedom. The proposed approach includes four major phases – initial partitioning, substructure workload prediction, element weights tuning, and partitioning results adjustment. The final three phases are performed iteratively until the workloads among the substructures are balanced reasonably. A substructure workload predictor that considers the sparsity and ordering of the substructure matrix is used in the proposed approach. Several numerical experiments conducted herein reveal that the proposed iterative mesh partitioning optimization often results in a superior workload balance among substructures and reduces the total elapsed time of the corresponding parallel nonlinear dynamic finite element analysis.
机译:这项工作提出了一种新颖的迭代方法,用于网格划分优化,以利用直接子结构方法提高并行非线性动态有限元分析的效率,该方法涉及子结构内部自由度的静态压缩。拟议的方法包括四个主要阶段–初始分区,子结构工作量预测,元素权重调整和分区结果调整。最后三个阶段是迭代执行的,直到子结构之间的工作负载得到合理平衡。在所提出的方法中使用了考虑子结构矩阵稀疏性和有序性的子结构工作量预测器。本文进行的一些数值实验表明,所提出的迭代网格划分优化通常会在子结构之间实现出色的工作量平衡,并减少了相应的并行非线性动态有限元分析的总经过时间。

著录项

  • 来源
    《Computational Mechanics》 |2002年第6期|456-468|共13页
  • 作者

    Y.-S. Yang; S.-H. Hsieh;

  • 作者单位

    National Center for Research on Earthquake Engineering Taiwan R.O.C. Formerly PhD student at Department of Civil Engineering National Taiwan University Taipei 10617 Taiwan R.O.C.;

    Department of Civil Engineering National Taiwan University Taipei 10617 Taiwan R.O.C. e-mail: shhsieh@ce.ntu.edu.tw;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Keywords Mesh partitioning; Parallel computing; Finite element computation;

    机译:关键字:网格划分;并行计算有限元计算;

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