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Modelling water content redistribution during evaporation from sandy soil in the presence of water table

机译:在有地下水位的情况下模拟从沙质土壤蒸发过程中的水分重新分配

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An analytical model based on Richards equation is presented to describe water content redistribution during evaporation. Exponential functions are utilized to describe the relation of hydraulic conductivity and water content on pressure head. The water content at any given depth z and time t, together with the evaporation rate at the soil surface are outputs of this model. The proposed is capable of modelling the transformation of the constant rate stage into a falling rate stage of evaporation, moreover it extends the use of analytical model to arbitrary initial conditions. Detailed parametric analysis was carried out to investigate the effect of six governing factors. The main findings are as follows: hydraulic conductivity (K-s) and desaturation coefficient (alpha) affect the water content profile more than the storage capacity (theta(s), theta(r)) does; the relation between the duration of the constant rate stage and the dimensionless evaporation rate gamma can be expressed by a negative power function; the initial conditions are the most influential factor for the soil water profile among all factors examined. Finally, two evaporation tests conducted on K-7 sand and Fontainebleau sand were introduced to validate the proposed analytical model. Results showed that this model could reasonably predict the temporal water content profile during evaporation process, but some discrepancies still existed in some cases. Nevertheless, the analytical model provides a useful tool for predicting the vertical distribution of water content during evaporation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了基于理查兹方程的分析模型,描述了蒸发过程中水分的重新分布。利用指数函数来描述压头上的水力传导率和水含量的关系。该模型的输出是在任何给定深度z和时间t处的水分含量以及在土壤表面的蒸发速率。所提出的方法能够对恒定速率阶段到蒸发的下降速率阶段的转换进行建模,而且将分析模型的使用扩展到任意初始条件。进行了详细的参数分析以调查六个控制因素的影响。主要发现如下:水力传导率(K-s)和去饱和系数(alpha)对水含量曲线的影响大于存储容量(theta(s),theta(r));恒定速率阶段的持续时间与无量纲蒸发速率γ之间的关系可以由负幂函数表示。在所有检查的因素中,初始条件是影响土壤水分剖面的最主要因素。最后,介绍了在K-7砂和枫丹白露砂上进行的两次蒸发测试,以验证所提出的分析模型。结果表明,该模型可以合理地预测蒸发过程中的水分含量,但在某些情况下仍存在一些差异。然而,分析模型为预测蒸发过程中水的垂直分布提供了有用的工具。 (C)2016 Elsevier Ltd.保留所有权利。

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