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Benchmark Study of a 3d Parallel Code for the Propagation of Large Subduction Earthquakes

机译:大型俯冲地震传播的3d并行代码的基准研究

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Benchmark studies were carried out on a recently optimized parallel 3D seismic wave propagation code that uses finite differences on a staggered grid with 2nd order operators in time and 4th order in space. Three dual-core supercomputer platforms were used to run the parallel program using MPI. Efficiencies of 0.91 and 0.48 with 1024 cores were obtained on HECToR (UK) and KanBalam (Mexico), and 0.66 with 8192 cores on HECToR. The 3D velocity field pattern from a simulation of the 1985 Mexico earthquake (that caused the loss of up to 30000 people and about 7 billion US dollars) which has reasonable agreement with the available observations, shows coherent, well developed surface waves propagating towards Mexico City.
机译:在最近优化的并行3D地震波传播代码上进行了基准研究,该代码在交错网格上使用了有限的差分,在时间上有2阶算子,在空间上有4阶算子。三个双核超级计算机平台用于使用MPI运行并行程序。在HECToR(英国)和KanBalam(墨西哥)上,具有1024个内核的效率分别为0.91和0.48,在HECToR上具有8192个内核的效率为0.66和0.66。与1985年墨西哥地震(造成多达3万人丧生和约70亿美元的损失)的模拟所得的3D速度场模式与现有观测值具有合理的一致性,显示出相干且发达的地表波向墨西哥城传播。

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