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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Earthquake responses of near-fault building clusters in mountain city considering viscoelasticity of earth medium and process of fault rupture
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Earthquake responses of near-fault building clusters in mountain city considering viscoelasticity of earth medium and process of fault rupture

机译:考虑土介质粘弹性和断裂破裂过程的山区城市近断层建筑群的地震反应

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摘要

A new algorithm is proposed to implement viscoelastic wave propagation in earth medium with surface topography by introducing history variables into integral type GZB constitutive equations and by using the recursive formulae of these history variables. Combining the proposed algorithm with the flexural wave algorithm for frame structure and the algorithm for bidirectional wave propagation, a new type of integrated method is developed for earthquake response analyses of near-fault building clusters in mountain city due to rupture of causative fault. The earthquake responses of building clusters of frame structures situated at different sites of a mountain in Chongqing city, China, are studied during a hypothetical 114 6.2 near-fault earthquake. The numerical results show that, for the multi-story buildings, the maximum peak value of beam-end bending moments appears in the building on the hill top and the earthquake risk positions are mainly at the bottom and/ or the top of the buildings. For the high-rise buildings, the maximum peak value of beam-end bending moments appears in the building on the mountainside and the earthquake risk positions are mainly at the bottom and/or the middle of the buildings.
机译:通过将历史变量引入积分型GZB本构方程中,并利用这些历史变量的递推公式,提出了一种新的算法来实现表面形貌在地球介质中的粘弹性波传播。将提出的算法与框架结构的弯曲波算法和双向波传播算法相结合,开发了一种新型的综合方法,用于分析因病害破裂而导致的山区城市近故障建筑群的地震反应。在假设的114 6.2近断层地震中,研究了位于中国重庆市一座山的不同地点的框架结构建筑群的地震响应。数值结果表明,对于多层建筑物,梁端弯矩的最大峰值出现在山顶的建筑物中,地震危险位置主要在建筑物的底部和/或顶部。对于高层建筑物,梁端弯矩的最大峰值出现在山腰的建筑物中,地震危险位置主要在建筑物的底部和/或中间。

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