A General Criterion for Liquefaction in Granular Layers with Heterogeneous Pore Pressure

L. Goren, R. Toussaint, E. Aharonov, D. Sparks, E. Flekkøy
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引用次数: 7

Abstract

Fluid-saturated granular and porous layers can undergo liquefaction and lose their shear resistance when subjected to shear forcing. In geosystems, such a process can lead to severe natural hazards of soil liquefaction, accelerating slope failure, and large earthquakes. Terzaghi's principle of effective stress predicts that liquefaction occurs when the pore pressure within the layer becomes equal to the applied normal stress on the layer. However, under dynamic loading and when the internal permeability is relatively small the pore pressure is spatially heterogeneous and it is not clear what measurement of pore pressure should be used in Terzaghi's principle. Here, we show theoretically and demonstrate using numerical simulations a general criterion for liquefaction that applies also for the cases in which the pore pressure is spatially heterogeneous. The general criterion demands that the average pore pressure along a continuous surface within the fluid-saturated granular or porous layer is equal to the applied normal stress.
非均匀孔隙压力下颗粒层液化的一般判据
当受到剪切力的作用时,饱和流体的颗粒层和多孔层会发生液化并失去抗剪切能力。在地质系统中,这一过程可能导致土壤液化、加速边坡破坏和大地震等严重的自然灾害。Terzaghi的有效应力原理预测,当层内的孔隙压力等于施加在层上的正应力时,液化就会发生。然而,在动荷载作用下,当内部渗透率较小时,孔隙压力在空间上是不均匀的,Terzaghi原理中孔隙压力的测量方法并不明确。在这里,我们从理论上展示并使用数值模拟证明了液化的一般准则,该准则也适用于孔隙压力在空间上不均匀的情况。一般准则要求饱和颗粒或多孔层内沿连续表面的平均孔隙压力等于施加的法向应力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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