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Partitioning strategy for efficient nonlinear finite element dynamic analysis on multiprocessor computers

机译:多处理器计算机上有效非线性有限元动力学分析的分区策略

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摘要

A computational procedure is presented for the nonlinear dynamic analysis of unsymmetric structures on vector multiprocessor systems. The procedure is based on a novel hierarchical partitioning strategy in which the response of the unsymmetric and antisymmetric response vectors (modes), each obtained by using only a fraction of the degrees of freedom of the original finite element model. The three key elements of the procedure which result in high degree of concurrency throughout the solution process are: (1) mixed (or primitive variable) formulation with independent shape functions for the different fields; (2) operator splitting or restructuring of the discrete equations at each time step to delineate the symmetric and antisymmetric vectors constituting the response; and (3) two level iterative process for generating the response of the structure. An assessment is made of the effectiveness of the procedure on the CRAY X-MP/4 computers.
机译:提出了一种用于矢量多处理器系统中非对称结构非线性动力学分析的计算程序。该过程基于一种新颖的分层划分策略,其中不对称和反对称响应矢量(模式)的响应仅通过使用原始有限元模型的自由度的一小部分获得。在整个求解过程中,导致高度并发的过程的三个关键要素是:(1)具有针对不同领域的独立形状函数的混合(或原始变量)公式; (2)在每个时间步对离散方程进行算子分解或重构,以描绘出构成响应的对称和反对称向量; (3)生成结构响应的两级迭代过程。在CRAY X-MP / 4计算机上对该程序的有效性进行了评估。

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