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P-y curve and lateral response of piles in fully liquefied sands

机译:完全液化砂土中的Py曲线和桩的横向响应

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This paper provides a technique to assess the response of laterally loaded piles and associated p-y curves in fully liquefied soils (where p is the soil-pile reaction and y is the pile deflection). The technique accounts for the variation of water pressure in the liquefied soils around the pile and its impact on the shape of the p-y curves and the pile lateral response. A constitutive undrained stress-strain model for fully liquefied saturated sands using the basic properties of sand is established to predict the post-liquefaction varying resistance of liquefied sands at different levels of loading assuming fully undrained conditions. The degradation in soil strength due to the free-field excess pore-water pressure (u _(xs,ff)), caused by an earthquake and resulting in full liquefaction, is considered along with the near-field excess pore-water pressure (u _(xs,ff)) induced by lateral loading from the superstructure. The presented procedure also accounts for the influence of the overburden pressure and sand density on the variation of excess water pressure in the near-field soil, the rebound of sand strength, and the shape of the p-y curve due to the dilative behavior of sands.
机译:本文提供了一种在完全液化的土壤中评估侧向荷载桩和相关p-y曲线的响应的技术(其中p是土桩反应,y是桩的挠度)。该技术解决了桩周围液化土壤中水压的变化及其对p-y曲线形状和桩侧向响应的影响。建立了利用砂子的基本特性的全液化饱和砂的本构不排水应力应变模型,以在假定完全不排水的条件下,预测液化砂在不同载荷水平下的液化后变化阻力。考虑到由于地震而导致完全液化的自由场多余孔隙水压力(u _(xs,ff))引起的土壤强度下降,以及近场多余孔隙水压力( u _(xs,ff))由上部结构的侧向荷载引起。提出的程序还考虑了上覆压力和砂密度对近场土壤中过高水压变化,砂强度回弹以及由于砂的扩张行为引起的p-y曲线形状的影响。

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