An equal-strain analytical solution for the radial consolidation of unsaturated soils by vertical drains considering drain resistance

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Abstract

Developing an analytical solution for the consolidation of unsaturated soils remains a challenging task due to the complexity of coupled governing equations for air and water phases. This paper presents an equal-strain model for the radial consolidation of unsaturated soils by vertical drains, and the effect of drain resistance is also considered. Simplified governing equations are established, and an analytical solution to calculate the excess pore-air and pore-water pressures is derived by using the methods of matrix analysis and eigenfunction expansion. The average degrees of consolidation for air and water phases and the ground surface settlement are also given. The solutions of the equal-strain model are verified by comparing the proposed free-strain model with the equal-strain model, and reasonably good agreement is obtained. Moreover, parametric studies regarding the drain resistance effect are graphically presented.

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Zhou, F., Chen, Z., & Wang, X. (2018). An equal-strain analytical solution for the radial consolidation of unsaturated soils by vertical drains considering drain resistance. Advances in Civil Engineering, 2018. https://doi.org/10.1155/2018/5069159

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