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Topographic effects during the September 19, 2017 Mexico city earthquake

机译:2017年9月19日墨西哥城地震期间的地形影响

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Seismic waves can significantly amplify in firm soil with abrupt geometric changes due to topographic effects. Moreover, nonlinearities associated with soil layering and geometrical interactions of the incoming waves can lead to changes in frequency content and duration. This paper presents a case study of the effects of the September 19, 2017 earthquake, in the seismic response of a building-hill system 60 m high located in the western part of Mexico City. The performance of the building-hill system was evaluated for this event accounting for site response, topographic, and soil-structure interaction effects, using three-dimensional finite difference models developed with the program FLAC(3D). From the numerical study, the seismic response of the slope was evaluated, accounting for the seismic building-hill interaction effect in the distribution of factors of safety (i.e. capacity over demand), and ground deformations during the event. The damage predicted by the numerical simulation in the building and the hill slope during the 2017 earthquake was in good agreement with that observed during post-earthquake site reconnaissance. To study the effects of the frequency content, seismic intensity, and duration in the distribution of factor of safety and slope deformation patterns, the building-hill seismic response was further studied for subduction and normal events, considering uniform hazard spectra with return period of 250 years. From the results gathered in here, a clear dependency of the expected damage on the hill slope as a function of the seismogenic zone (i.e. subduction or normal) was observed.
机译:地震波可以在坚固的土壤中显着放大,由于地形效应,几何形状会发生突然的变化。而且,与土壤分层和入射波的几何相互作用有关的非线性会导致频率含量和持续时间的变化。本文介绍了一个案例研究,该案例研究了墨西哥城西部60 m高的建筑物-山地系统在2017年9月19日地震的影响。使用由FLAC(3D)程序开发的三维有限差分模型,针对此事件评估了建筑物坡道系统的性能,考虑了场地响应,地形和土壤与结构之间的相互作用效应。从数值研究中,评估了边坡的地震反应,考虑了安全系数(即需求量之内)的分布以及事件期间地面变形的地震建筑与山体相互作用的影响。 2017年地震期间建筑物和山坡上的数值模拟预测的破坏与震后现场勘察中观察到的破坏非常吻合。为了研究频率含量,地震烈度和持续时间对安全系数和边坡变形模式分布的影响,进一步研究了建筑物-山丘地震对俯冲和正常事件的响应,并考虑了统一的危险谱,其返回周期为250年份。从这里收集的结果来看,观察到山坡上预期破坏的明显依存性是地震发生带的函数(即俯冲或正常)。

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