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Revisiting the horizontal redistribution of water in soils: Experiments and numerical modeling

机译:重新研究土壤中水的水平再分布:实验和数值模拟

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摘要

A series of experiments and related numerical simulations were carried out to study one‐dimensional water redistribution processes in an unsaturated soil. A long horizontal Plexiglas box was packed as homogenously as possible with sand. The sandbox was divided into two sections using a very thin metal plate, with one section initially fully saturated and the other section only partially saturated. Initial saturation in the dry section was set to 0.2, 0.4, or 0.6 in three different experiments. Redistribution between the wet and dry sections started as soon as the metal plate was removed. Changes in water saturation at various locations along the sandbox were measured as a function of time using a dual‐energy gamma system. Also, air and water pressures were measured using two different kinds of tensiometers at various locations as a function of time. The saturation discontinuity was found to persist during the entire experiments, while observed water pressures were found to become continuous immediately after the experiments started. Two models, the standard Richards equation and an interfacial area model, were used to simulate the experiments. Both models showed some deviations between the simulated water pressures and the measured data at early times during redistribution. The standard model could only simulate the observed saturation distributions reasonably well for the experiment with the lowest initial water saturation in the dry section. The interfacial area model could reproduce observed saturation distributions of all three experiments, albeit by fitting one of the parameters in the surface area production term.
机译:进行了一系列实验和相关的数值模拟,以研究非饱和土壤中的一维水分再分配过程。将一个长的水平有机玻璃盒子尽可能均匀地装满沙子。使用一块非常薄的金属板将沙箱分为两部分,其中一部分最初完全饱和,另一部分仅部分饱和。在三个不同的实验中,干部的初始饱和度设置为0.2、0.4或0.6。除去金属板后,湿部分和干部分之间就开始重新分配。使用双能伽马系统测量了沙箱沿不同位置的水饱和度随时间的变化。另外,使用两种不同的张力计在不同位置测量了空气和水压随时间的变化。发现饱和度不连续性在整个实验过程中持续存在,而发现的水压在实验开始后立即变得连续。使用标准的Richards方程和界面面积模型这两种模型来模拟实验。两种模型在重新分配的早期都显示了模拟水压和实测数据之间的一些偏差。对于干燥区域中初始水饱和度最低的实验,标准模型只能很好地模拟观察到的饱和度分布。界面面积模型可以重现所有三个实验的观察到的饱和度分布,尽管通过拟合表面积生产项中的一个参数即可。

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