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High-performance finite-element simulations of seismic wave propagation in three-dimensional nonlinear inelastic geological media

机译:三维非线性非弹性地质介质中地震波传播的高性能有限元模拟

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摘要

We present finite-element numerical simulations of seismic wave propagation in non linear inelastic geological media. We demonstrate the feasibility of large-scale modeling based on an implicit numerical scheme and a nonlinear constitutive model. We illustrate our methodology with an application to regional scale modeling in the French Riviera, which is prone to earthquakes. The PaStiX direct solver is used to handle large matrix numerical factorizations based on hybrid parallelism to reduce memory overhead. A specific methodology is introduced for the parallel assembly in the context of soil nonlinearity. We analyse the scaling of the parallel algorithms on large-scale configurations and we discuss the physical results.
机译:我们目前在非线性非弹性地质介质中传播地震波的有限元数值模拟。我们证明了基于隐式数值方案和非线性本构模型的大规模建模的可行性。我们通过在容易发生地震的法国里维埃拉地区尺度建模中的应用来说明我们的方法。 PaStiX直接求解器用于处理基于混合并行性的大型矩阵数值分解,以减少内存开销。介绍了一种在土壤非线性情况下用于并行装配的特定方法。我们分析了大规模配置上并行算法的缩放比例,并讨论了物理结果。

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