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P-Y CURVE TO MODEL LATERAL RESPONSE OF PILE FOUNDATIONS IN LIQUEFIED SOILS

机译:P-Y曲线在液化土中桩基础横向响应模型中的应用

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Dynamic soil-pile interaction is undoubtedly a complex phenomenon. Though this interaction is well established in competent non-liquefied soil, the same for liquefied soil is still an area of active research. One of the versatile soil-pile interaction model used in practice is the Beam on Nonlinear Winkler Foundation (BNWF) model. In the BNWF model, the soil is represented by a set of independent springs lumped at discrete locations along the pile. For earthquake loading, the lateral soil spring, which is generally referred to as a p-y spring, is one of the governing parameters determining the response of piles. Although much research has already been carried out to define the p–y curves for liquefied sand, considerable inconsistency still exist in appropriately defining its shape, salient features including magnitude and most importantly the applicability This paper critically reviews the most commonly used models for the p-y curve for liquefied soils. Some experimental test results are compared with the commonly used models and the inconsistencies in the definition of the p-y curve are highlighted. The effect of p-y curve on lateral pile response to displacement loading is discussed and a more realistic class of p-y curve is proposed.
机译:动态的桩土相互作用无疑是一个复杂的现象。尽管这种相互作用已经在合格的非液化土壤中得到了很好的确立,但对于液化土壤而言,同样仍然是一个活跃的研究领域。在实践中使用的通用的土-桩相互作用模型之一是非线性Winkler地基梁(BNWF)模型。在BNWF模型中,土壤由沿桩的离散位置集中的一组独立弹簧表示。对于地震荷载,通常称为p-y弹簧的侧向土壤弹簧是确定桩响应的控制参数之一。尽管已经进行了很多研究来确定液化沙子的py曲线,但是在适当定义其形状,显着特征(包括大小)以及最重要的适用性方面仍然存在很大的不一致之处。本文对py的最常用模型进行了严格的评论。液化土壤的曲线。将一些实验测试结果与常用模型进行比较,并突出了p-y曲线定义中的不一致之处。讨论了p-y曲线对侧向桩对位移载荷响应的影响,并提出了更为现实的一类p-y曲线。

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