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The design and implementation of a parallel unstructured Euler solver using software primitives

机译:使用软件原语的并行非结构化Euler求解器的设计和实现

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摘要

This paper is concerned with the implementation of a three-dimensional unstructured grid Euler-solver on massively parallel distributed-memory computer architectures. The goal is to minimize solution time by achieving high computational rates with a numerically efficient algorithm. An unstructured multigrid algorithm with an edge-based data structure has been adopted, and a number of optimizations have been devised and implemented in order to accelerate the parallel communication rates. The implementation is carried out by creating a set of software tools, which provide an interface between the parallelization issues and the sequential code, while providing a basis for future automatic run-time compilation support. Large practical unstructured grid problems are solved on the Intel iPSC/860 hypercube and Intel Touchstone Delta machine. The quantitative effect of the various optimizations are demonstrated, and we show that the combined effect of these optimizations leads to roughly a factor of three performance improvement. The overall solution efficiency is compared with that obtained on the CRAY-YMP vector supercomputer.
机译:本文涉及在大规模并行分布式内存计算机体系结构上的三维非结构化网格Euler-solver的实现。目标是通过使用数值高效的算法来实现较高的计算速率,从而将求解时间最小化。已经采用了具有基于边缘的数据结构的非结构化多网格算法,并且已经设计和实现了许多优化以加速并行通信速率。通过创建一组软件工具来执行该实现,该软件工具提供了并行化问题和顺序代码之间的接口,同时为将来的自动运行时编译支持提供了基础。大型实用的非结构化网格问题已在Intel iPSC / 860超立方体和Intel Touchstone Delta计算机上得到解决。演示了各种优化的量化效果,并且我们证明了这些优化的综合效果大致可导致三项性能改进。将整体解决方案效率与在CRAY-YMP矢量超级计算机上获得的解决方案效率进行比较。

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