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Prediction of pile response to lateral spreading by 3-D soil-water coupled dynamic analysis: shaking in the direction of ground flow

机译:通过3-D土水耦合动力分析预测桩对横向扩展的响应:沿地流方向的振动

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摘要

Numerical predictions of a series of shake table tests are presented in this paper in order to examine the accuracy of a 3-D effective stress analysis in predicting the behavior of piles subjected to liquefaction-induced ground flow. For a rigorous assessment of the analysis, “Class B” predictions are reported in which numerical and constitutive model parameters were set before the event, and the target motion wasused as an input motion in the analysis. Modeling of the stress-strain behavior of sand, identification of the initial stress state and critical numerical parameters in the 3-D seismic analysis of the soil-pile system are discussed in detail. Combined effects of kinematic loads due to large lateral ground movement and inertial loads on pile behavior are examined through a series of tests using different shaking direction, excitation amplitude and mass of the footing (load from the superstructure). By and large, very good agreement was obtained between the predicted and measured peakresponses of the pile foundation, whereas the analysis underestimated the displacements of the sheet-pile wall and was less accurate in predicting the residualdeformation of the foundation piles. Reasons for these discrepancies and limitations of the analysis method are discussed.
机译:本文提出了一系列振动台试验的数值预测,以检验3-D有效应力分析在预测液化引起的地基流动性时的准确性。为了对分析进行严格评估,报告了“ B类”预测,其中在事件之前设置了数值和本构模型参数,并且将目标运动用作分析中的输入运动。详细讨论了砂土的应力应变行为建模,初始应力状态的识别以及土桩系统的3D地震分析中的关键数值参数。通过一系列测试,使用不同的摇动方向,激励幅度和基础质量(来自上部结构的负载),通过一系列测试来检查由于大的地面侧向运动和惯性负载对运动荷载的综合影响。总体上,在桩基础的预测和实测峰值响应之间获得了很好的一致性,而分析却低估了板桩墙的位移,并且在预测基础桩的残余变形方面不太准确。讨论了这些差异的原因以及分析方法的局限性。

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