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Semi-analytical solutions for two-dimensional plane strain consolidation of layered unsaturated soil

机译:二维平面应变固结层状不饱和土的半分析解

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摘要

In preloading ground improvement projects, vertical drains are frequently installed to accelerate the consolidation process of a soil stratum which is generally unsaturated and layered in natural. To address such issue, this study attempts to constitute a reliable two-dimensional (2D) plane strain consolidation system of layered unsaturated soil. A novel semi-analytical solution for this system is developed using the methods of Fourier expansion, Laplace transform and their inversions. In order to obtain the final solution, the proposed system is firstly converted into a set of ordinary differential systems using the methods of Fourier expansion and Laplace transform. By defining a set of new variable vectors, these ordinary differential systems are further changed into diagonal ones and solved. Then, the semi-analytical solutions for the pore-air and pore-water pressures and the soil settlement are formulated, and numerical inversion of Laplace transform is applied to obtain the final results in temporal domain. Through comparing against the existing solution and the finite difference solution, the validity and the accuracy of the proposed solutions are verified. Moreover, a worked example incorporating a step load is presented to illustrate the 2D plane strain consolidation behavior of layered unsaturated soil and the influence from the coefficient of horizontal permeability is investigated.
机译:在预加载地面改进项目中,经常安装垂直漏极以加速土壤层的固结过程,其通常是不饱和和层状的。为了解决这些问题,本研究试图构成层状不饱和土的可靠二维(2D)平面应变固结系统。使用傅里叶扩展,拉普拉斯变换及其反转,开发了该系统的新型半分析解决方案。为了获得最终解决方案,将所提出的系统首先使用傅立叶扩展和拉普拉斯变换的方法转换成一组常规差分系统。通过定义一组新的变量向量,这些常规系统进一步改变为对角线并解决。然后,配制了用于孔隙空气和孔隙水压和土壤沉降的半分析解决方案,并且施加Laplace变换的数值倒置以获得颞域域的最终结果。通过与现有解决方案的比较和有限差分解决方案,验证了所提出的解决方案的有效性和准确性。此外,提出了一种实施例,以说明层状不饱和土的2D平面应变固结行为,并研究了水平渗透系数的影响。

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