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Numerical Modeling of Water Flow in Expansive Soils with Simplified Description of Soil Deformation

机译:膨胀土中水流的数值模拟及简化的土体变形描述

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摘要

In this paper we describe a numerical model of transient water flow in unsaturated expansive soils and the resulting soil volume change. The unsaturated flow equation is solved in a 2D domain using a finite-volume method and an explicit time discretization scheme. Strains in the soil mass are calculated by two simplified approaches, assuming that the strain state is either 1D (in the vertical direction only) or 2D with equal strains in horizontal and vertical directions. The model is applied to two cases described in the literature, in which the strains were computed from the solution of the stress equilibrium equation. It is shown that the simplified methods give results which are reasonably close to the more complex approach based on the equilibrium equations. The proposed model can be used to predict time-varying soil shrinkage and swelling caused by natural and anthropogenic factors.
机译:在本文中,我们描述了非饱和膨胀土壤中瞬态水流的数值模型以及由此产生的土壤体积变化。使用有限体积方法和显式时间离散方案在二维域中求解非饱和流动方程。假定应变状态是1D(仅在垂直方向上)或2D在水平和垂直方向上具有相等的应变,则通过两种简化方法计算土壤质量中的应变。该模型适用于文献中描述的两种情况,其中应变是根据应力平衡方程的解计算的。结果表明,简化方法得出的结果与基于平衡方程的更为复杂的方法相当接近。该模型可用于预测自然和人为因素引起的土壤随时间的收缩和溶胀。

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