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Modeling of liquefaction using two-phase FEM with UBC3D-PLM model

机译:用UBC3D-PLM模型使用两相FER的液化建模

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Soil liquefaction describes a loss of strength of saturated sand upon sudden or cyclic loading. A slight disturbance of such a soil's fabric might lead to severe damage, e.g. the collapse of sea dikes. Accurate modeling of the state transition between saturated soil and a liquefied soil-water mixture, as well as post-liquefaction phenomena, is crucial for the prediction of such damage. However, developing an appropriate numerical model remains a challenging problem, especially when the simulation involves dynamic large deformation processes. In order to make a first step towards an accurate simulation of soil liquefaction, a two-phase formulation of the finite element method (FEM) in conjunction with the elastoplastic UBC3D-PLM model is investigated. The performance of this approach is analyzed based on a shaking table benchmark.
机译:土壤液化描述突然或循环加载时饱和砂强度的损失。例如,这种土壤面料的轻微干扰可能导致严重损害,例如,海堤防的崩溃。精确建模的饱和土壤和液化土壤 - 水混合物的状态过渡,以及液化后现象,对预测这种损害至关重要。然而,开发适当的数值模型仍然是一个具有挑战性的问题,特别是当模拟涉及动态大变形过程时。为了使第一步迈向对土壤液化的准确模拟,研究了与弹性塑料UBC3D-PLM模型结合的有限元方法(FEM)的两相配方。基于振动表基准分析了这种方法的性能。

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