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首页> 外文期刊>Vadose Zone Journal >Numerical Analysis of Solute Transport from Trickle Sources in a Combined Desert Soil–Imported Soil Flow System
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Numerical Analysis of Solute Transport from Trickle Sources in a Combined Desert Soil–Imported Soil Flow System

机译:沙漠土壤与土壤相结合的土壤流系统中Tri流溶质运移的数值分析

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Received for publication 14 March 2007. One of the alternative solutions to the problems associated with the agricultural use of stony desert soils is to apply imported soil material into trenches that are aligned along the crop rows. The purpose of the present study was twofold: first, to analyze the effect of two imported soil materials available in the Arava Valley of Israel on the movement and spread of water and solute originating from multiple trickle line laterals, taking into account the trench geometry, the discharge of the trickle line laterals, the pattern of the plant root distribution, and the spatial heterogeneity of the hydraulic properties of the local soil; and, second, to extend the analyses to hypothetical imported soil materials characterized by different sets of hydraulic parameters (saturated conductivity, Ks, and the van Genuchten soil parameters and n, related to the soil's pore size distribution). Results of the present study suggest that in the case of relatively low-conductive imported soil materials, a wide and shallow trench may leach the solute below a horizontal control plane more efficiently than a narrow and deep trench, while the opposite is true for high-conductive imported soil materials. Combinations of the threshold values of Ks and above which a narrow and deep trench is more efficient in solute leaching than a wide and shallow trench calculated here suggest that, for a given n, a relatively large threshold value of Ks may compensate for a relatively small threshold value of , particularly when n is relatively large.
机译:收录于2007年3月14日,以出版。对于与石质荒漠土壤的农业使用相关的问题,替代解决方案之一是将进口的土壤材料施用到沿作物行排列的沟渠中。本研究的目的是双重的:首先,考虑到沟槽的几何形状,分析以色列阿拉瓦河谷地区两种进口土壤材料对源自多个multiple流线分支的水和溶质的运动和扩散的影响,滴灌线分支的排放,植物根系分布的模式以及当地土壤水力特性的空间异质性;其次,将分析扩展到假设的进口土壤材料,这些材料具有不同的水力参数集(饱和电导率,Ks和van Genuchten土壤参数和n,与土壤的孔径分布有关)。本研究的结果表明,在导电性相对较低的进口土壤材料的情况下,宽而浅的沟渠可能比窄而深的沟渠更有效地浸出水平控制平面以下的溶质,而高沟渠则相反。导电进口土壤材料。 Ks的阈值的组合,高于此阈值的窄而深的沟槽在溶质浸出中比此处计算的宽和浅的沟槽更有效,这表明,对于给定的n,相对较大的Ks阈值可以补偿相对较小的阈值的阈值,特别是当n较大时。

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