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Seismic ground motion amplification in a 3D sedimentary basin: The effect of the vertical velocity gradient

机译:3D沉积盆地中的地震地震动放大:垂直速度梯度的影响

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Ground motion amplification in sedimentary basins has been observed in some moderate or large earthquakes, such as the 1994 Northridge and 1999 Chi-Chi event. Many numerical studies with simplified 2D models have shown significant effects of the vertical velocity gradient of sediment on basin amplification. However, we need to consider a more realistic 3D model and solve wave equations with 3D numerical methods in order to improve our understanding of basin amplification. In this study, we extend a 2D pseudospectral and finite difference hybrid method to a 3D case and investigate the effects of the vertical velocity gradient for a 3D basin model. Numerical simulations were performed for four basin models with increasing vertical velocity gradients on a PC cluster using 64 processors for 67 108 864 discretized grids. The results show that the vertical velocity gradient enhances basin amplification through strong secondary surface waves and basin trapped waves. The 3D geometry of the basin causes a wave-front focusing effect that contributes significantly to a localized strong amplification with the maximum peak ground velocity in the basin. The results of this study suggest that it is important to consider the detailed properties of sedimentary basins in seismic ground motion studies.
机译:在某些中度或大型地震中,如1994年的Northridge和1999年的Chi-Chi事件,已经观察到沉积盆地的地震动放大。许多使用简化的2D模型进行的数值研究表明,沉积物的垂直速度梯度对盆地放大具有显着影响。但是,我们需要考虑更现实的3D模型,并使用3D数值方法求解波动方程,以增进对盆地放大的理解。在这项研究中,我们将2D伪谱和有限差分混合方法扩展到3D情况,并研究3D盆地模型的垂直速度梯度的影响。在PC群集上使用64个处理器对67 108 864个离散网格进行了垂直速度梯度增加的四个盆地模型的数值模拟。结果表明,垂直速度梯度通过强次表面波和盆陷波增强盆放大。盆地的3D几何形状引起波前聚焦效应,该效应极大地促进了盆地中最大峰值地面速度的局部强放大作用。这项研究的结果表明,在地震地震动研究中考虑沉积盆地的详细特性非常重要。

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