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A distributed memory parallel implementation of the multigrid method for solving three-dimensional implicit solid mechanics problems

机译:用于解决三维隐式固体力学问题的多网格方法的分布式内存并行实现

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We describe the parallel implementation of a multigrid method for unstructured finite element discretizations of solid mechanics problems. We focus on a distributed memory programming model and use the MPI library to perform the required interprocessor communications. We present an algebraic framework for our parallel computations, and describe an object-based programming methodology using Fortran90. The performance of the implementation is measured by solving both fixed- and scaled-size problems on three different parallel computers (an SGI Origin2000, an IBM SP2 and a Cray T3E). The code performs well in terms of speedup, parallel efficiency and scalability. However, the floating point performance is considerably below the peak values attributed to these machines. Lazy processors are documented on the Origin that produce reduced performance statistics. The solution of two problems on an SGI Origin2000, an IBM PowerPC SMP and a Linux cluster demonstrate that the algorithm performs well when applied to the unstructured meshes required for practical engineering analysis. Copyright (C) 2004 John Wiley Sons, Ltd.
机译:我们描述了用于固体力学问题的非结构化有限元离散化的多网格方法的并行实现。我们专注于分布式内存编程模型,并使用MPI库执行所需的处理器间通信。我们为并行计算提供了一个代数框架,并描述了使用Fortran90的基于对象的编程方法。通过在三台不同的并行计算机(SGI Origin2000,IBM SP2和Cray T3E)上解决固定大小和缩放大小的问题来衡量实现的性能。该代码在加速,并行效率和可伸缩性方面表现良好。但是,浮点性能大大低于归因于这些机器的峰值。原始处理器上记录了惰性处理器,这些处理器会产生性能下降的统计信息。 SGI Origin2000,IBM PowerPC SMP和Linux集群上的两个问题的解决方案证明,该算法在应用于实际工程分析所需的非结构化网格时性能良好。版权所有(C)2004 John Wiley Sons,Ltd.

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