IMPACT OF SPATIAL VARIABILITY OF EARTHQUAKE GROUND MOTION ON SEISMIC RESPONSE OF A RAILWAY BRIDGE

Rachid Derbal, N. Benmansour, M. Djafour
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引用次数: 3

Abstract

This paper studies the impact of spatially varying ground motions on the responses of a railway bridge. The evaluation of the seismic hazard for a given site is to estimate the seismic ground motion at the sur- face. This is the result of the combination of the action of the seismic source, which generates seismic waves, the propagation of these waves between the source and the site, and the local conditions of the site. Firstly, the seismic ground motions are modelled by assuming the base rock motions of the same intensity and modelling them with a filtered Tajimi-Kanai power spectral density function and a spatial ground motion coherency loss function. Then, the power spectral density function of ground motion on surface is derived by considering the site amplification effect based on the one-dimensional seismic wave propagation theory. A comparison between the bridge responses to uniform ground motion, to spatial ground motions with and without considering local site effects is established. Discussions on the seismic ground motion spatial variability and local site conditions effects on structural responses of railway bridge are made.
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地震动空间变异性对铁路桥梁地震反应的影响
本文研究了空间变化的地面运动对铁路桥梁响应的影响。对某一场地的地震危险性评价就是对地表的地震地震动进行估计。这是地震源的作用、地震波在震源和场地之间的传播以及场地的当地条件共同作用的结果。首先,假设基岩运动具有相同的强度,并采用过滤后的Tajimi-Kanai功率谱密度函数和空间地震动相干损失函数对其进行建模;然后,基于一维地震波传播理论,考虑场地放大效应,推导了地表地震动的功率谱密度函数;建立了考虑和不考虑局部场地效应的桥梁对均匀地震动、空间地震动的响应比较。讨论了地震动空间变异性和局地条件对铁路桥梁结构响应的影响。
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