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A practical method for construction of p-y curves for liquefiable soils

机译:液化土p-y曲线构造的实用方法

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In practice, the analysis of laterally loaded piles is often carried out using a "Beam on Non-linear Winkler Foundation method" whereby the lateral pile-soil interaction is modelled as a set of non-linear springs (also known as p-y curves). During seismic liquefaction, the saturated sandy soil changes its state from a solid to a viscous fluid like material, which in turn alters the shape of the p-y curve. Typically, p-y curves for non-liquefied soil looks like a convex curve with an initial stiff slope that reduces with increasing pile-soil relative displacement (y) i.e., elasto-plastic softening response. However, recent research conclusively showed that p-y curve for liquefied soil has a different shape, i.e., upward concave with practically-zero initial stiffness (due to the loss of particle to particle contact) up to a certain displacement, beyond which the stiffness increases due to reengaging of the sand particles. This paper presents a practical method for construction of the newly proposed p-y curves along with an example.
机译:在实践中,通常使用“非线性Winkler地基上的梁”来进行侧向荷载桩的分析,其中,将侧向桩土相互作用建模为一组非线性弹簧(也称为p-y曲线)。在地震液化过程中,饱和的沙土将其状态从固体变为类似粘性流体,从而改变了p-y曲线的形状。典型地,非液化土壤的p-y曲线看起来像具有初始刚性斜率的凸曲线,其随着桩-土相对位移(y)的增加,即弹塑性软化响应的增加而减小。然而,最近的研究最终表明,液化土的py曲线具有不同的形状,即向上凹面的初始刚度几乎为零(由于颗粒与颗粒之间的接触损失),直至一定位移为止,超过该位移,刚度会增加重新接合沙粒。本文提供了一种构建新提出的p-y曲线的实用方法以及一个示例。

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