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Prediction of pore water pressure generation leading to liquefaction under torsional cyclic loading

机译:扭转循环载荷作用下导致液化的孔隙水压力产生的预测

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摘要

Undrained cyclic loading tests were performed under torsional shear in a hollow cylindrical apparatus on four sands of various densities, initial stress levels, gradings and origins to establish the pattern of excess pore water pressure generation with cycles leading to initial liquefaction. Two equations were derived to predict this pattern. The first is based on the method introduced by Ishibashi et al. (1977) and incorporates density and the effective stress level into the original equation. The second involves a unique relationship between the excess pore water pressure and the shear work imparted to the sand and it was obtained independent of the shear stress amplitude when the dissipated shear work was normalized with respect to density and the effective stress level. The excess pore water pressure required to induce liquefaction was found to necessitate lower normalized shear work from finer sands. These equations can be used to assess the liquefaction potential and/or can be directly related to the amount of seismic energy dissipated in the field.
机译:在空心圆柱设备中的扭剪下,在四种密度,初始应力水平,坡度和成因不同的沙子上进行不排水的循环载荷试验,以建立导致初始液化的超孔隙水压力产生模式。导出了两个方程式来预测这种模式。第一种是基于Ishibashi等人介绍的方法。 (1977),并将密度和有效应力水平纳入原始方程式。第二个问题是多余的孔隙水压力与赋予砂土的剪切功之间的独特关系,并且当耗散的剪切功相对于密度和有效应力水平进行归一化时,获得的结果与剪切应力幅值无关。发现引起液化所需的过高孔隙水压力需要从较细的砂子中进行较低的归一化剪切功。这些方程式可用于评估液化潜力和/或可直接与现场耗散的地震能量有关。

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