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On the complexity of seismic waves trapped in irregular topographies

机译:关于不规则地形中捕获的地震波的复杂性

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Documented observations from strong seismic events have repeatedly shown that the ground surface topography significantly affects the characteristics of seismic waves (amplitude, frequency and duration) travelling from the deeper layers of the crust compared to what the ground motion would have been on the surface of a flat homogeneous linear elastic half-space. Although numerous theoretical studies have qualitatively corroborated these observations, they systematically underestimate the absolute level of topographic amplification up to an order of magnitude or more in some cases. In this paper, we try to bridge the quantitative gap between previous theoretical studies and observations by systematically studying the role of geometry, stratigraphy, and ground motion characteristics through a series of elaborate numerical analyses. We show a collection of examples that highlight the effects of topography on seismic ground shaking, and we point out what these results suggest in the context of the current state of earthquake engineering practice. Examples range from semi-analytical solutions of wave propagation in infinite wedges to three-dimensional numerical simulations of topography effects using digital elevation map-generated models and layered geologic features. We conclude by demonstrating that topography effects vary strongly with the stratigraphy and material properties of the underlying geologic materials, and thus it cannot be accurately predicted by studying the effects of ground surface geometry alone.
机译:从强地震事件中记录下来的观测结果已反复表明,与地壳表面的地震动相比,地表地形会严重影响从地壳深层传播的地震波的特征(振幅,频率和持续时间)。平面均质线性弹性半空间。尽管许多理论研究在质量上证实了这些观察结果,但在某些情况下,它们系统地低估了地形放大的绝对水平,甚至达到一个数量级或更高。在本文中,我们通过一系列详尽的数值分析系统地研究了几何学,地层学和地震动特征的作用,试图弥合先前的理论研究和观测之间的定量差距。我们展示了一系列示例,这些示例突出了地形对地震地面震动的影响,并指出了这些结果在地震工程实践的当前状况下的含义。示例包括从无限楔形波传播的半解析解到使用数字高程图生成的模型和分层地质特征进行的地形效应的三维数值模拟。我们通过证明地形效应随基础地质材料的地层学和材料属性变化很大而得出结论,因此仅通过研究地表几何形状的影响就无法准确预测地形效应。

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