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首页> 外文期刊>International Journal of High Performance Computing Applications >HIGH RESOLUTION AEROSPACE APPLICATIONS USING THE NASA COLUMBIA SUPERCOMPUTER
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HIGH RESOLUTION AEROSPACE APPLICATIONS USING THE NASA COLUMBIA SUPERCOMPUTER

机译:使用NASA哥伦比亚超级计算机的高分辨率航空应用

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This paper focuses on the parallel performance of two high-performance aerodynamic simulation packages on the newly installed NASA Columbia supercomputer. These packages include both a high-fidelity, unstructured, Reynolds-averaged Navier-Stokes solver, and a fully-automated inviscid flow package for cut-cell Cartesian grids. The complementary combination of these two simulation codes enables high-fidelity characterization of aerospace vehicle design performance over the entire flight envelope through extensive parametric analysis and detailed simulation of critical regions of the flight envelope. Both packages are industrial-level codes designed for complex geometry and incorporate customized multigrid solution algorithms. The performance of these codes on Columbia is examined using both MPI and OpenMP and using both the NUMAIink and InfiniBand interconnect fabrics. Numerical results demonstrate good scalability on up to 2016 CPUs using the NUMAIink4 interconnect, with measured computational rates in the vicinity of 3 TFLOP/s, while InfiniBand showed some performance degradation at high CPU counts, particularly with multigrid. Nonetheless, the results are encouraging enough to indicate that larger test cases using combined MPI/OpenMP communication should scale well on even more processors.
机译:本文重点介绍了新安装的NASA Columbia超级计算机上两个高性能空气动力学仿真软件包的并行性能。这些软件包包括高保真,非结构化,雷诺平均的Navier-Stokes求解器,以及用于切割单元笛卡尔网格的全自动无粘性流动软件包。通过广泛的参数分析和对飞行包络关键区域的详细仿真,这两个仿真代码的互补组合可实现整个飞行包络线的航空航天飞行器设计性能的高保真度表征。两种软件包都是针对复杂几何体设计的工业级代码,并结合了定制的多网格解决方案算法。使用MPI和OpenMP以及NUMAIink和InfiniBand互连结构都可以检查这些代码在Columbia上的性能。数值结果表明,使用NUMAIink4互连,最多可在2016年CPU上实现良好的可伸缩性,测得的计算速率约为3 TFLOP / s,而InfiniBand在高CPU数量(尤其是使用多网格)下显示出一些性能下降。但是,结果令人鼓舞,表明使用MPI / OpenMP组合通信的较大测试用例应在更多处理器上很好地扩展。

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