Effect of Local Site Conditions on Earthquake Ground Motions in Hanoi: Results from Numerical Simulations

G. K. Trung, P. Nguyen, N. D. Vinh
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Abstract

This paper presents some numerical simulation results on the influence of local site conditions on earthquake ground motions in Hanoi. Numerical simulation method through DEEPSOIL program was used in the study. Geological data of 600 groundwater survey and engineering geology boreholes in Hanoi as well as the acceleration records of Imperial Valley earthquake in 1979 with magnitude M = 6.5, hypocenter of 26.5 km, and PGA of 0.169 g were chosen as input data for the research. By analyzing geological conditions, tectonics, seismic characteristics of different soil types in Hanoi, a geological cross-section cutting through different engineering geology in Hanoi areas have been constructed. Numerical simulations of site effect at typical locations along the cross-section show: (i) The geological conditions on the surface of Hanoi clearly influence the earthquake ground motion, this is confirmed by the increase in the amplitude of the horizontal component of ground acceleration and the change of the strong vibrations from short to longer period. These effects obey a general rule, they become stronger when moving on the cross-section from west to east, corresponding to an increase in the thickness of the weak sedimentary layers covering the hard rock; and (ii) However, at the place where the weak and soft soil layer appear (LK50 borehole), despite of the vibrations that are still converted from short to longer periods, the amplitude of the PGA is strongly attenuated at the surface layer.
局地条件对河内地震地面运动的影响:数值模拟结果
本文介绍了局地条件对河内市地震地面运动影响的一些数值模拟结果。采用DEEPSOIL程序进行数值模拟。选取河内市600个地下水调查和工程地质钻孔的地质资料以及1979年震级M = 6.5、震源26.5 km、PGA为0.169 g的帝王谷地震加速度记录作为研究输入资料。通过分析河内市不同土壤类型的地质条件、构造、地震特征,构建了河内市不同工程地质的地质剖面。沿剖面典型位置的场地效应数值模拟表明:(1)河内地表的地质条件对地震地面运动有明显的影响,地表加速度水平分量振幅的增大和强振动由短周期向长周期的变化证实了这一点。这些影响有一个普遍的规律,在横断面上自西向东移动越强,对应于覆盖硬岩的弱沉积层厚度的增加;然而,在软弱土层和软土层出现的地方(LK50钻孔),尽管振动仍然由短周期转换为长周期,但PGA振幅在表层强烈衰减。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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