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Finite element modeling of soil-pile response subjected to liquefaction-induced lateral spreading in a large-scale shake table experiment

机译:大型振动台试验中液化引起侧向扩展的土桩响应有限元模拟

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This paper presents two-dimensional (2D) nonlinear dynamic finite element (FE) modeling of a large-scale shake table test conducted at the E-Defense shake table facility in Japan. This study explores the efficiency of 2D effective stress analyses to predict the behavior of soil-pile systems subjected to liquefaction and lateral spreading using the library of existing constitutive models and the prescribed parameters. The coupled soil water FE model was developed in OpenSees and the analysis results are compared with measured data from the shake table experiment with the main emphasis on the response of liquefied soil and the demand applied to the piles as well as the sheet-pile quay wall. By examining the numerical analysis results, it is demonstrated that the FE model was able to reproduce the shake table model behavior with reasonable accuracy. Lastly, a mitigation strategy was modeled to investigate its effectiveness to reduce the demand on the soil-pile system.
机译:本文介绍了在日本E-Defense振动台设备上进行的大规模振动台测试的二维(2D)非线性动态有限元(FE)建模。这项研究使用现有的本构模型库和规定的参数,探索了二维有效应力分析的效率,以预测液化和侧向扩展的土桩系统的行为。在OpenSees中开发了耦合的土壤水有限元模型,并将分析结果与振动台实验的测量数据进行了比较,主要侧重于液化土壤的响应以及对桩以及板桩码头墙的需求。通过检查数值分析结果,证明了有限元模型能够以合理的精度再现振动台模型的行为。最后,对缓解策略进行了建模,以研究其降低土壤-桩系统需求的有效性。

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