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THE EFFECT OF SOIL HETEROGENEITY AND HYSTERESIS ON SOLUTE TRANSPORT - A NUMERICAL EXPERIMENT

机译:土壤非均质性和滞后性对溶质运移的影响-一项数值实验

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Heterogeneity and hysteretic flow are known to affect the downward movement of solutes in soils. Numerous studies have examined the effect of heterogeneity on solute transport as well as the effect of hysteresis. In this study we analyse the combined effect of heterogeneity and hysteretic water flow on the downward movement of a conservative solute using numerical simulation. Hysteresis is described by the scaling down model and two Mualem models, his original model II, and his universal model derived from Model II. A non-hysteretic model coinciding with the main wetting and drying curve was used for comparison. Both 1D and 2D simulations were performed in flow domains assumed to be scale heterogeneous, its scale factor being lognormally distributed and second order stationary. The effect of soil texture on the plume's behaviour in combination with hysteresis was analysed by using a fine and coarse sandy material. A 3D finite element model for water flow combined with a particle tracking method for transport was used to perform the simulations. It is shown that hysteresis has considerable effect on solute transport was used to perform the simulations. It is shown that hysteresis has a considerable effect on solute transport thereby contradicting earlier findings in literature. The effect on solute transport was different depending on the non-hysteretic curve chosen as a reference. In addition, the effect of hysteresis on solute transport was found to depend strongly on the type of model used. Both Mualem models showed a similar behaviour under the various simulations performed, suggesting the use of the simpler universal model. Differences between the three models were found to be considerable for coarse sandy material. Hysteretic flow conditions may be as important as heterogeneity in retarding solute transport for 1D simulations. The 2D simulations showed that heterogeneity does not necessarily retard the downward movement of the solute plume as compared to the homogeneous flow domain using a non-hysteresis model. [References: 20]
机译:众所周知,异质性和滞后流动会影响土壤中溶质的向下运动。许多研究已经检查了异质性对溶质传输的影响以及磁滞的影响。在这项研究中,我们使用数值模拟分析了非均质性和滞后水流对保守溶质向下运动的综合影响。磁滞由缩小模型和两个Mualem模型(原始模型II和从模型II派生的通用模型)描述。使用与主要润湿和干燥曲线一致的非迟滞模型进行比较。一维和二维仿真均在假定为尺度异质的流域中执行,其尺度因子为对数正态分布且二阶平稳。通过使用细,粗沙质材料,分析了土壤质地对羽流行为以及滞后的影响。使用水流的3D有限元模型与用于运输的粒子跟踪方法相结合来执行模拟。结果表明,磁滞对溶质传输具有相当大的影响,用于执行模拟。结果表明,磁滞对溶质传输有很大影响,因此与文献中的早期发现相矛盾。根据选择的非迟滞曲线作为参考,对溶质迁移的影响是不同的。此外,发现磁滞对溶质迁移的影响很大程度上取决于所用模型的类型。两个Mualem模型在执行的各种模拟下均显示出相似的行为,这表明使用了更简单的通用模型。发现三种模型之间的差异对于粗砂质材料而言是相当大的。在一维模拟中,滞后流动条件可能与非均质性一样重要,因为它会延迟溶质的传输。二维模拟显示,与使用非迟滞模型的均匀流域相比,异质性并不一定会阻止溶质羽流的向下运动。 [参考:20]

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