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The spectral element method as an effective tool for solving large scale dynamic soil-structure interaction problems

机译:谱元法是解决大规模动力土-结构相互作用问题的有效工具

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摘要

The spectral element method (SEM) is a powerful numerical technique naturally suited for wave propagation and dynamic soil-structure interaction (DSSI) analyses. A class of SEM has been widely used in the seismological field (local or global seismology) thanks to its capability of providing high accuracy and allowing the implementation of optimized parallel algorithms. We illustrate inthis contribution how the SEM can be effectively used also for the numerical analysis of DSSI problems, with reference to the 3D seismic response of a railway viaduct in Italy. This numerical analysis includes the combined effect of: a) strong lateral variations of soil properties; b) topographic amplification; c) DSSI; d) spatial variation of earthquake ground motion in the structural response. Some hints on the work in progress to effectively handle nonlinear problems with SEM are also given.
机译:光谱元素法(SEM)是一种强大的数值技术,自然适用于波传播和动态土-结构相互作用(DSSI)分析。一类SEM由于具有提供高精度和实现最佳并行算法的能力,已在地震学领域(本地或全球地震学)中得到广泛使用。我们将参考意大利铁路高架桥的3D地震响应,说明如何将SEM有效地用于DSSI问题的数值分析。数值分析包括以下综合作用:a)土壤特性的强烈横向变化; b)地形放大; c)DSSI; d)地震地震动在结构响应中的空间变化。还给出了一些有效的方法来有效地解决SEM的非线性问题。

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