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首页> 外文期刊>Bulletin of Earthquake Engineering >Interactions between topographic irregularities and seismic ground motion investigated using a hybrid FD-FE method
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Interactions between topographic irregularities and seismic ground motion investigated using a hybrid FD-FE method

机译:用混合FD-FE方法研究地形不规则性与地震地震动之间的相互作用

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摘要

A hybrid method combining finite element and 4th-order finite difference techniques is developed to model SH and P-SV seismic wave propagation in a 2D elastic medium with irregular surface topography. Both the classic staggered grid finite difference scheme and the partially staggered grid scheme are tested. The accuracy of the hybrid method is studied by comparison with a semi-analytical and another numerical method. Subsequently, to study the amplification, numerical simulations of seismic wave propagation in a series of hills are carried out and compared with the single-hill case. Depending on the position of the source in relation to the topography, the ratio between the heights and lengths of the hills or the ratio between the lengths of the hills and the wavelength, the presence of several hills as opposed to a single one can increase the amplification effect due to topography. This study highlights the fact that, when evaluating topographic site effects, surrounding topography must be taken into account in addition to local topography.
机译:提出了一种将有限元与四阶有限差分技术相结合的混合方法,以模拟SH和P-SV地震波在表面形貌不规则的2D弹性介质中的传播。测试了经典交错网格有限差分方案和部分交错网格方案。通过与半解析和另一种数值方法进行比较,研究了混合方法的准确性。随后,为了研究放大率,进行了一系列山丘中地震波传播的数值模拟,并将其与单山丘情况进行了比较。根据光源相对于地形的位置,山丘的高度和长度之比或山丘的长度与波长之比,与单个山峰相比,多个山丘的存在会增加由于地形的放大作用。这项研究强调了这样一个事实,即在评估地形站点效果时,除了局部地形之外,还必须考虑周围的地形。

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