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SEISMIC BEARING CAPACITY OF PILES IN LIQUEFIABLE SOILS

机译:液化土中桩的抗震承载力

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References(30) An investigation into the base capacity of piles in passing through loose, liquefiable sand and founded in underlying dense sand is presented based on the results of a series of dynamic centrifuge tests on instrumented model pile groups. Excess pore pressures equal in magnitude to the initial effective vertical stress were observed to be generated in the bearing layer of dense sand at both shallow (15 m) and deep (26 m) depths. This induced a dramatic reduction in base capacity and consequently, large settlements of the piles by as much as ~5D0. A spherical cavity expansion solution for base capacity was validated against measured values showing good agreement, provided that excess pore pressure and dynamic shear stiffness in the bearing layer are known. A simple closed-form relationship, applicable to end-bearing piles, between the degree of liquefaction and the initial pile static safety factor was then developed against plunging failure at the pile base which can be used in design.
机译:参考文献(30)基于一系列在仪器模型桩组上进行的动态离心试验的结果,提出了对桩通过疏松的,可液化的砂并在下层致密砂中建立的基础承载力的研究。观察到在浅(15 m)和深(26 m)深度的致密砂岩承压层中都产生了数量级等于初始有效垂直应力的过大孔隙压力。这导致基础承载力显着降低,因此,桩的大沉降量高达〜5D0。如果已知轴承层中的过大孔隙压力和动态剪切刚度,则可针对显示出良好一致性的测量值验证用于基础容量的球腔膨胀解决方案。然后,针对液化程度与初始桩静态安全系数之间的关系,建立了适用于端承桩的简单封闭形式关系,以防止桩基在桩基上的倾覆破坏,可用于设计。

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