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A numerical and experimental study of hollow steel pile in layered soil subjected to lateral dynamic loading

机译:侧向动力荷载作用下层状土中空心钢桩的数值与试验研究

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The present study aims at investigating the nonlinear behavior of single hollow pile in layered soil subjected to varying levels of horizontal dynamic load. A finite element model has been developed using commercially available FEM based software. Mohr-Coulomb plasticity model is used to simulate the soil plasticity whereas the pile-material is idealized as elastic. Numerical results are validated comparing with the experimental results. The experimental investigations were carried out in the field located at IFF Kharagpur. Two types of motion: horizontal and rocking are studied. The effects of various influencing parameters, namely, exciting moment, length and diameter of the pile etc. on the nonlinear dynamic response of piles are investigated. It is found that separation of pile from the surrounding soil considerably affects the resonance frequency and amplitude of the pile foundations.
机译:本研究旨在研究单层空心桩在层状土中承受水平水平动载荷变化的非线性行为。使用基于市场的FEM软件开发了有限元模型。使用Mohr-Coulomb可塑性模型来模拟土壤可塑性,而将桩材料理想化为弹性。数值结果与实验结果进行了比较。实验研究是在IFF Kharagpur的现场进行的。研究了两种运动:水平运动和摇摆运动。研究了不同的影响参数,如激振力矩,桩的长度和直径等,对桩的非线性动力响应的影响。发现桩与周围土壤的分离会显着影响桩基础的共振频率和振幅。

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