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Generalized analytical solution for 2D plane strain consolidation of unsaturated soil with time-dependent drainage boundaries

机译:时滞排水边界下非饱和土二维平面应变固结的广义解析解

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摘要

This paper discusses the 2D plane strain consolidation problem of unsaturated soil considering the time-dependent drainage boundaries. A set of time-growing exponential functions are firstly used to describe the changes of excess pore-pressures at the drainage boundaries of an unsaturated soil layer. Then, a generalized analytical solution for the 2D plane strain consolidation under these boundaries and constant initial excess porepressures is obtained using the finite Fourier transform and Laplace transform methods. Further, the comparisons are presented to verify the accuracy of the proposed solution. It is shown that the proposed solution is more general in the drainage boundary, and in a good agreement with the analytical solution available in the literature and the finite difference solution. Finally, a worked example is presented to investigate the consolidation characteristics under four changing drainage parameters of time-dependent drainage boundaries. The average degrees of consolidation for both air and water phases as well as that for the soil layer are presented and discussed.
机译:本文讨论了考虑时间依赖性排水边界的非饱和土二维平面应变固结问题。首先使用一组随时间增长的指数函数来描述非饱和土层排水边界处的多余孔隙压力的变化。然后,使用有限傅里叶变换和拉普拉斯变换方法获得了在这些边界和恒定的初始超孔隙压力下二维平面应变固结的广义解析解。此外,提供了比较结果以验证所提出解决方案的准确性。结果表明,所提出的解决方案在排水边界上更为通用,并且与文献中的分析解决方案和有限差分解决方案非常吻合。最后,给出了一个工作实例,研究了随时间变化的排水边界的四个不断变化的排水参数下的固结特性。介绍并讨论了空气和水相以及土壤层的平均固结度。

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