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Winkler springs (p-y curves) for liquefied soil from element tests

机译:来自元素试验的液化土的Winkler Springs(P-Y曲线)

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In practice, piles are most often modelled as "Beams on Non-Linear Winkler Foundation" (also known as "p-y spring" approach) where the soil is idealised as p-y springs. These p-y springs are obtained through semi-empirical approach using element test results of the soil. For liquefied soil, a reduction factor (often termed as p-multiplier approach) is applied on a standard p-y curve for the non-liquefied condition to obtain the p-y curve liquefied soil condition. This paper presents a methodology to obtain p-y curves for liquefied soil based on element testing of liquefied soil considering physically plausible mechanisms. Validation of the proposed p-y curves is carried out through the back analysis of physical model tests.
机译:在实践中,桩最常被建模为“非线性Winkler基础上的光束”(也称为“P-Y Spring”方法),其中土壤理想化为P-Y弹簧。通过使用土壤的元素测试结果通过半经验方法获得这些P-Y弹簧。对于液化土,施加在标准P-Y曲线上施加减少因子(通常称为P乘法器方法,以获得非液化条件,以获得P-Y曲线液化土壤条件。本文提出了一种基于考虑物理合理机制的液化土的元素试验来获得液化土曲线的P-Y曲线的方法。通过对物理模型测试的后分析进行所提出的P-Y曲线的验证。

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