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Seismic Response Analysis Of The Deep Saturated Soil Deposits In Shanghai

机译:上海市深层饱和土的地震反应分析

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摘要

The quaternary deposits in Shanghai are horizontal soil layers of thickness up to about 280 m in the urban area with an annual groundwater table between 0.5 and 0.7 m from the surface. The characteristics of deep saturated deposits may have important influences upon seismic response of the ground in Shanghai. Based on the Biot theory for porous media, the water-saturated soil deposits are modeled as a two-phase porous system consisting of solid and fluid phases, in this paper. A nonlinear constitutive model for predicting the seismic response of the ground is developed to describe the dynamic characters of the deep-saturated soil deposits in Shanghai. Subsequently, the seismic response of a typical site with 280 m deep soil layers, which is subjected to four base excitations (El Centro, Taft, Sunan, and Tangshan earthquakes), is analyzed in terms of an effective stress-based finite element method with the proposed constitutive model. Special emphasis is given to the computed results of accelerations, excess pore-water pressures, and settlements during the seismic excitations. It has been found that the analysis can capture fundamental aspects of the ground response and produce preliminary results for seismic assessment.
机译:上海的第四纪沉积物是市区的水平土壤层,厚度约280 m,年地面地下水位在0.5到0.7 m之间。深层饱和矿床的特征可能对上海地面的地震响应产生重要影响。基于Biot理论的多孔介质,本文将含水饱和的土壤沉积物建模为由固相和液相组成的两相多孔体系。建立了用于预测地震动响应的非线性本构模型,以描述上海深部饱和土层的动力特征。随后,根据有效的基于应力的有限元方法,分析了一个典型的具有280 m深土层的地点的地震响应,该地点经历了四个基础地震(El Centro,Taft,苏南和唐山地震)。提出的本构模型。特别强调地震激励过程中加速度,多余的孔隙水压力和沉降的计算结果。已经发现,该分析可以捕获地面响应的基本方面,并产生用于地震评估的初步结果。

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