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Parallel simulation of strong ground motions during recent and historical damaging earthquakes in Tokyo, Japan

机译:日本东京最近和历史破坏性地震中强地面运动的并行模拟

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The development of high-performance computing facilities such as the Earth Simulator supercomputer and the deployment of dense networks of strong ground motion instruments in Japan (K-NET and KiK-net) have made it possible to directly visualize regional seismic wave propagation during large earthquakes. Our group has developed an efficient parallel finite difference method (FDM) code for modeling the seismic wavefield and three-dimensional visualization techniques, both of which are suitable for implementation on the Earth Simulator. We will show examples of current state of the large-scale FDM simulations of seismic wave propagation by using the Earth Simulator to recast strong ground motions during damaging earthquakes in Tokyo such as the 2000 Tottori-ken Seibu (M_J7.3) earthquake, the 1923 great Kanto earthquake (M7.9), and the 1855 Ansei Edo (M7) earthquake. Significant speedup is achieved using 64-1406 processors of the Earth Simulator with good vector performance of over 40-60% of the theoretical peak speed.
机译:诸如地球模拟器超级计算机之类的高性能计算设备的发展以及日本强大的地面运动仪器的密集网络(K-NET和KiK-net)的部署,使得直接观察大地震期间区域地震波的传播成为可能。 。我们的小组开发了一种有效的并行有限差分法(FDM)代码,用于对地震波场建模和三维可视化技术,这两种代码都适合在Earth Simulator上实现。我们将通过使用地球模拟器重铸东京等破坏性地震(例如1923年的鸟取县西武(M_J7.3)地震)期间的强烈地面运动来演示地震波传播的大规模FDM模拟的当前示例。关东大地震(M7.9)和1855年安西江户(M7)地震。使用Earth Simulator的64-1406处理器可实现显着的加速,其良好的矢量性能超过理论峰值速度的40-60%。

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