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Parallel performance of two applications in the Boeing high performance computing benchmark suite

机译:波音高性能计算基准套件中两个应用程序的并行性能

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摘要

We describe our work to evaluate the performance of the parallel versions of two floating- point-intensive engineering applications from Boeing's high performance computing benchmark suite (BHPCBS) on emerging RISC parallel systems and PC clusters. The first application is a computational fluid dynamics (CFD) code, OVERFLOW, developed by NASA and used by Boeing for analysis and design of advanced aircraft. The second appli- cation is a prototype of a computational electromagnetics (CEM) code, developed by Boeing and used for radar cross-section studies. The distributed memory parallel versions of both applications use the message passing interface (MPI) standard for message passing. The goal of our work was to determine whether RISC parallel systems and PC clusters, which offer high performance at low cost, may be able to meet Boeing's computing requirements in the future. We describe the test environments for the studies, discuss parallelization issues and strategies and present performance data for the two applications.
机译:我们描述了我们的工作,以评估来自波音公司高性能计算基准套件(BHPCBS)的两个浮点密集型工程应用程序在新兴RISC并行系统和PC群集上的并行版本的性能。第一个应用程序是由NASA开发并由波音公司用于高级飞机的分析和设计的计算流体动力学(CFD)代码OVERFLOW。第二个应用是波音​​公司开发的计算电磁学(CEM)代码的原型,用于雷达截面研究。两个应用程序的分布式内存并行版本使用消息传递接口(MPI)标准进行消息传递。我们工作的目标是确定以低成本提供高性能的RISC并行系统和PC集群将来是否能够满足波音的计算要求。我们描述了研究的测试环境,讨论了并行化问题和策略,并给出了这两个应用程序的性能数据。

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