合并(业务)
拉普拉斯变换
岩土工程
孔隙水压力
土壤水分
平面应力
正弦和余弦变换
包气带
傅里叶变换
地质学
材料科学
数学
土壤科学
地下水
数学分析
傅里叶分析
工程类
结构工程
有限元法
业务
短时傅里叶变换
会计
作者
Lei Wang,Sidong Shen,Tianyi Li,Minjie Wen,Annan Zhou
标识
DOI:10.1016/j.jrmge.2022.08.011
摘要
In practical engineering, the total vertical stress in the soil layer is not constant due to stress diffusion, and varies with time and depth. Therefore, the purpose of this paper is to investigate the effect of stress diffusion on the two-dimensional (2D) plane strain consolidation properties of unsaturated soils when the stress varies with time and depth. A series of semi-analytical solutions in terms of excess pore air and water pressures and settlement for 2D plane strain consolidation of unsaturated soils can be derived with the joint use of Laplace transform and Fourier sine series expansion. Then, the inverse Laplace transform of the semi-analytical solution is given in the time domain using a self-programmed code based on Crump's method. The reliability of the obtained solutions is proved by the degeneration. Finally, the 2D plots of excess pore pressures and the curves of settlement varying with time, considering different physical parameters of unsaturated soil stratum and depth-dependent stress, are depicted and analyzed to study the 2D plane strain consolidation properties of unsaturated soils subjected to the depth-dependent stress.
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