液化
岩土工程
空间变异性
剪切模量
结算(财务)
蒙特卡罗方法
孔隙水压力
参数统计
环境科学
土壤液化
地质学
数学
材料科学
统计
计算机科学
万维网
付款
复合材料
作者
Yubing Wang,Shuang Shu,Yongxin Wu
标识
DOI:10.1142/s1793431122500026
摘要
The objective of this study was to investigate the liquefaction response of soil using the spatial variability of the shear modulus by considering different values of the coefficient of variation (COV) and the horizontal scale of fluctuation (SOF). For this purpose, a Monte Carlo simulation, combining the digital generation of a non-Gaussian random field with finite difference analyses, was utilized. Parametric studies were performed from the perspectives of the liquefaction area, excess pore water pressure (EPWP), and displacement at the ground surface. We found that a larger COV of the soil shear modulus was correlated with a slower reduction of liquefaction area and a lower EPWP ratio. To explain the influence from the perspective of the spatial distribution characteristics of the shear modulus, a deterministic model test was carried out. Additionally, it was found that the displacement history and the differential settlement at the end of shaking were regularly affected by the COV and the horizontal SOF, especially for large COV and horizontal SOF.
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