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Dynamic response of deep soft soil deposits under multidirectional earthquake loading

机译:多向地震作用下深层软土沉积物的动力响应

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摘要

The analysis of site response to earthquake is of great importance for seismic design of structure. Although it has long been recognized that the ground is simultaneously subjected to both horizontal and vertical motions during a real earthquake, the effect of vertical motion is usually ignored in most site response analyses. Moreover, some studies show that there are significant differences in site responses for saturated and unsaturated soil deposits, and site response is influenced by variation of groundwater table. Therefore, these factors should be considerably considered in the dynamic site response analysis. Based on the results of geological investigation as well as laboratory and field tests conducted in Shanghai, a deep geotechnical profile with a depth of 280 m is analyzed in this paper. By using a verified, fully coupled and inelastic finite element procedure, a series of numerical analyses is carried out for a deep soft soil profile subjected to multidirectional earthquake loadings. Parameters of the model in the procedure are calibrated by field and laboratory tests. Numerical results demonstrate that the behavior of vertical amplification is quite different from the horizontal counterpart. Furthermore, the use of a single horizontal component as seismic input in site response analysis, neglecting the other horizontal component and the vertical one, may result in considerable underestimation of site response. Variation of groundwater table brings about a profound effect on both vertical and horizontal motions, its ratio, the response spectra at ground surface, and excess pore water pressure ratio. The analysis can capture a more complete and fundamental aspects of ground response for preliminary seismic assessment.
机译:现场地震响应分析对结构的抗震设计具有重要意义。尽管早就认识到在真实地震中地面同时受到水平和垂直运动的影响,但在大多数现场响应分析中,垂直运动的影响通常被忽略。此外,一些研究表明,饱和和非饱和土壤沉积物的场地响应存在显着差异,场地响应受地下水位变化的影响。因此,在动态站点响应分析中应充分考虑这些因素。根据上海的地质调查结果以及实验室和现场测试,本文分析了深度为280 m的岩土剖面。通过使用经过验证的,完全耦合的非弹性有限元程序,对承受多向地震载荷的深层软土剖面进行了一系列数值分析。该过程中模型的参数通过现场和实验室测试进行校准。数值结果表明,垂直放大的行为与水平放大的行为大不相同。此外,在现场响应分析中使用单个水平分量作为地震输入,而忽略了其他水平分量和垂直分量,可能会导致对现场响应的估计不足。地下水位的变化对垂直运动和水平运动,其比率,地表响应谱以及过高的孔隙水压力比率都产生深远的影响。该分析可以捕获地面响应的更完整和基本的方面,以进行初步的地震评估。

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