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Large-Scale Parallel Viscous Flow Computations using an Unstructured Multigrid Algorithm

机译:使用非结构化多重网格算法的大规模并行粘性流计算

摘要

The development and testing of a parallel unstructured agglomeration multigrid algorithm for steady-state aerodynamic flows is discussed. The agglomeration multigrid strategy uses a graph algorithm to construct the coarse multigrid levels from the given fine grid, similar to an algebraic multigrid approach, but operates directly on the non-linear system using the FAS (Full Approximation Scheme) approach. The scalability and convergence rate of the multigrid algorithm are examined on the SGI Origin 2000 and the Cray T3E. An argument is given which indicates that the asymptotic scalability of the multigrid algorithm should be similar to that of its underlying single grid smoothing scheme. For medium size problems involving several million grid points, near perfect scalability is obtained for the single grid algorithm, while only a slight drop-off in parallel efficiency is observed for the multigrid V- and W-cycles, using up to 128 processors on the SGI Origin 2000, and up to 512 processors on the Cray T3E. For a large problem using 25 million grid points, good scalability is observed for the multigrid algorithm using up to 1450 processors on a Cray T3E, even when the coarsest grid level contains fewer points than the total number of processors.
机译:讨论了用于稳态空气动力流的并行非结构化集聚多网格算法的开发和测试。聚集多网格策略使用图算法从给定的精细网格中构建粗糙的多网格级别,类似于代数多网格方法,但是直接使用FAS(全近似方案)方法在非线性系统上运行。在SGI Origin 2000和Cray T3E上检查了多网格算法的可伸缩性和收敛速度。给出了一个参数,该参数指示多网格算法的渐近可伸缩性应与其基础单网格平滑方案的渐近可伸缩性相似。对于涉及数百万个网格点的中等大小的问题,单网格算法获得了近乎完美的可伸缩性,而对于多网格V和W循环,仅使用了多达128个处理器,而并行网格的效率仅下降了一点。 SGI Origin 2000,以及Cray T3E上最多512个处理器。对于使用2500万网格点的大问题,即使在最粗糙的网格级别包含的点数少于处理器总数的情况下,在Cray T3E上使用多达1450个处理器的多网格算法也可观察到良好的可伸缩性。

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    Mavriplis Dimitri J.;

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  • 年度 1999
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