剪切模量一维垂直变率对场地地震反应的影响

M. H. Brahim, H. Afra
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引用次数: 0

摘要

城市发展加快,在劣质土壤上建造建筑物变得不可避免,这增加了岩土工程风险。在这种情况下,近年来提出了研究给定环境下土壤剖面行为的概率方法。本研究的目的是利用概率方法研究土体剪切模量的垂直变异性对土体地震反应的影响。考虑两种非均质性:(1)土体剖面剪切模量随机分布引起的非均质性;(2)土层的非均质性,剪切模量随深度线性增加。采用蒙特卡罗模拟方法建立了第一个非均质土壤模型。剪切模量的空间变化受变异系数参数的控制。第二种非均质土模型假定剪切模量随深度线性增加。生成这些非均质土壤,然后将其整合到基于一维波传播的计算机程序中,从而在“自由场”土壤上产生地震反应。为了证明和显示在模型中考虑异质性的重要性,结果与确定性分析的例子进行了比较,这些分析是通过从阿尔及利亚特定地点获得的剪切模量的实验值进行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EFFECT OF 1D VERTICAL VARIABILITY OF SHEAR MODULUS ON THE SEISMIC RESPONSE OF SITES
Urban development is increased and the construction of building on poor quality soils becomes non avoidable which increases the geotechnical risk. Below these circumstances, the probabilistic approaches to study the behavior of a soil profile in a given environment have been proposed in recent years. The purpose of this research work is to study the effect of vertical variability of soil shear modulus on soil seismic response using the probabilistic approach. Two types of heterogeneity are considered: (1) heterogeneity due to the random distribution of the shear modulus in a soil profile; (2) heterogeneity of soil layer with shear modulus increasing linearly with depth. The first heterogeneous soil models are generated by Monte Carlo simulation. The spatial variation of the shear modulus is controlled by the variation coefficient parameters. The second heterogeneous soil models are assumed to have shear modulus increasing linearly with depth. These heterogeneous soils are generated and then integrated into the computer program based on the one dimensional wave propagation, resulting in seismic responses at the 'free field' soil. To demonstrate and show the importance of considering heterogeneities in the model, the results are compared with examples of deterministic analysis by means of the experimental value of shear modulus obtained from a specific site in Algeria.
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