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A parallel multigrid solver for viscous flows on anisotropic structured grids

机译:用于各向异性结构化网格上粘性流的并行多网格求解器

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This paper presents an efficient parallel multigrid solver for speeding up the computation of a 3-D model that treats the flow of a viscous fluid over a flat plate. The main interest of this simulation lies in exhibiting some basic difficulties that prevent optimal multigrid efficiencies from being achieved. As the computing platform we have used Coral, a Beowulf-class system based on Intel Pentium processors and equipped with GigaNet cLAN and switched Fast Ethernet networks. Our study not only examines the scalability of the solver but also includes a performance evaluation of Coral where the investigated solver has been used to compare several of its design choices, namely, the interconnection network (GigaNet versus switched Fast-Ethernet) and the node configuration (dual nodes versus single nodes). As a reference, the performance results have been compared with those obtained with the NAS-MG benchmark.
机译:本文提出了一种有效的并行多网格求解器,用于加快处理粘性流体在平板上流动的3-D模型的计算。此模拟的主要兴趣在于表现出一些基本的困难,这些困难阻碍了实现最佳的多电网效率。作为计算平台,我们使用了Coral,这是一个基于Intel Pentium处理器的Beowulf级系统,配备了GigaNet cLAN和交换式快速以太网。我们的研究不仅检查了求解器的可伸缩性,还包括对Coral的性能评估,其中所研究的求解器已用于比较其几种设计选择,即互连网络(千兆网与交换式快速以太网)和节点配置(双节点与单节点)。作为参考,性能结果已与NAS-MG基准测试获得的结果进行了比较。

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