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Degradation of lateral bearing capacity of piles in soft clay subjected to cyclic lateral loading

机译:循环横向载荷的软粘土中桩侧轴承能力的降解

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摘要

In this article, the degradation of the lateral bearing capacity of piles in soft clay subjected to cyclic lateral loading is studied numerically. A modified kinematic hardening constitutive model is employed to simulate the degradation of soft clay after cyclic loading. The modified model is verified by comparing the numerical simulation results with the results of centrifuge model tests. Furthermore, the modified model is applied to numerical simulations for evaluating the lateral bearing capacity of piles in soft clay subjected to cyclic lateral loading. The degradation of the lateral bearing capacity of piles in soft clay after different cyclic displacement levels and different numbers of cycles is investigated. The study reveals that the modified kinematic hardening constitutive model can effectively estimate the cyclic degradation behavior of piles in soft clay subjected to cyclic lateral loading. The degradation of the ultimate lateral bearing capacity progresses slowly with increasing cyclic displacement level for fewer cycles, and the degradation develops significantly at higher levels of cyclic displacement after applying a larger number of cycles.
机译:在本文中,在数值上进行了在经过循环横向载荷的软粘土中横向承载能力的降解。使用改性运动硬化构成型模型来模拟循环载荷后软粘土的降解。通过将数值模拟结果与离心模型测试结果进行比较来验证修改的模型。此外,修改模型应用于评估经受循环横向载荷的软粘土中桩的横向承载能力的数值模拟。研究了在不同环状位移水平和不同数量的循环之后桩在软粘土中横向承载能力的降解。该研究表明,改性运动硬化组成型模型可以有效地估计在经受循环横向载荷的软粘土中桩的环状降解行为。最终横向承载能力的降解缓慢地通过增加循环循环较少的循环置换水平缓慢进行,并且在施加较大数量的循环后,降解在较高水平的循环位移下显着发展。

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