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Development of Scalable Three-Dimensional Elasto-Plastic Nonlinear Wave Propagation Analysis Method for Earthquake Damage Estimation of Soft Grounds

机译:施加三维弹塑性非线性波传播分析方法的施加地震损伤估算

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In soft complex grounds, earthquakes cause damages with large deformation such as landslides and subsidence. Use of elasto-plastic models as the constitutive equation of soils is suitable for evaluation of nonlinear wave propagation with large ground deformation. However, there is no example of elasto-plastic nonlinear wave propagation analysis method capable of simulating a large-scale soil deformation problem. In this study, we developed a scalable elasto-plastic nonlinear wave propagation analysis program based on three-dimensional nonlinear finite-element method. The program attains 86.2% strong scaling efficiency from 240 CPU cores to 3840 CPU cores of PRIMEHPC FX10 based Oakleaf-FX [1], with 8.85 TFLOPS (15.6% of peak) performance on 3840 CPU cores. We verified the elasto-plastic nonlinear wave propagation program through convergence analysis, and conducted an analysis with large deformation for an actual soft ground modeled using 47,813,250 degrees-of-freedom.
机译:在柔和的复杂地面,地震导致损坏损坏,如山体滑坡和沉降。使用弹性塑料模型作为土壤本构方程,适用于评估具有大地变形的非线性波传播。然而,没有能够模拟大规模土壤变形问题的弹塑性非线性波传播分析方法。在这项研究中,我们开发了一种基于三维非线性有限元方法的可扩展弹塑性非线性波传播分析程序。该计划从240个CPU核心达到86.2%的强度缩放效率,从基于Primehpc FX10的oakleaf-fx [1]的3840 CPU内核,在3840个CPU核心上有8.85 TFLOPS(峰值的15.6%)性能。我们通过收敛性分析验证了弹性塑料非线性波传播程序,并对使用47,813,250度的自由度建模的实际软接地进行了大变形的分析。

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