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首页> 外文期刊>Canadian Journal of Soil Science >Influence of the shape of inter-horizon boundary and size of soil tongues on preferential flow under shallow groundwater conditions: A simulation study
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Influence of the shape of inter-horizon boundary and size of soil tongues on preferential flow under shallow groundwater conditions: A simulation study

机译:浅层地下水条件下视界间边界形状和土舌大小对优先流量的影响

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Kulasekera, P. B. and Parkin, G. W. 2011. Influence of the shape of inter-horizon boundary and size of soil tongues on preferential flow under shallow groundwater conditions: A simulation study. Can. J. Soil Sci. 91: 211-221. Detailed studies of the impact of soil tongues at soil horizon interfaces are very important in understanding preferential flow processes through layered soils and in improving the accuracy of models predicting water and solute transport through the vadose zone. The implication of having soil tongues of different shapes and sizes created at the soil horizon interface on solute transport through a layered soil horizon was studied by simulating water and solute transport using the VS2DI model. This 2-D simulation study reconfirmed that soil tongues facilitate preferential flow, and the level of activeness of tongues may depend on the number of soil tongues, their spacing and distribution. Also, the size of the soil tongues (length and diameter at the interface between the soil horizons) and their shape influence the rate of preferential flow. Increasing tongue length consistently resulted in an increase in solute velocity across the entire soil profile regardless of the tongue shape; for example, a soil tongue of 0.25 m length increased solute velocity by about 1.5 times over a soil profile without tongues, but this increase might be different for soil types and groundwater conditions other than those considered in this study. Narrowing of tongues increased solute velocity, whereas increasing the number of tongues in a wider soil profile decreased the solute-front's velocity. As tongue length increased, the area containing solutes at prescribed elapsed times decreased. An implication of this study is that soil horizon tongue shape and spacing reduce pollutant residence times, hence inter-horizon boundary morphology should be considered when modelling transport through the vadose zone. As well, since the solute velocity behaviours of a triangular- and a wider rectangular-shaped tongue were nearly identical, simply measuring solute velocity in the field will reveal little information on the shape of a soil tongue.
机译:Kulasekera,P. B.和Parkin,G. W.2011。水平边界边界的形状和土舌的大小对浅层地下水条件下优先流动的影响:模拟研究。能够。 J.土壤科学。 91:211-221。详细了解土舌在土壤水平界面上的影响,对于理解层状土壤中的优先流动过程以及提高预测水和溶质通过渗流带的模型的准确性非常重要。通过使用VS2DI模型模拟水和溶质的运移,研究了在土壤层界面上产生不同形状和大小的土舌对溶质在层状土壤层中的迁移的影响。这项2-D模拟研究再次证实了土舌促进了优先流动,并且舌的活跃程度可能取决于土舌的数量,其间距和分布。同样,土舌的大小(土层之间交界处的长度和直径)及其形状也会影响优先流的速率。无论舌头形状如何,不断增加的舌头长度都会导致整个土壤剖面中溶质速度的增加;例如,长度为0.25 m的土壤舌比没有舌的土壤剖面的溶质速度增加了约1.5倍,但是对于该土壤类型和地下水条件,该增加可能与本研究中所考虑的不同。舌头变窄会增加溶质速度,而在较宽的土壤剖面中增加舌头数会降低溶质前沿的速度。随着舌头长度的增加,在规定的经过时间包含溶质的区域减少。这项研究的意义在于,土壤水平舌的形状和间距减少了污染物的停留时间,因此,在对通过渗流带的运输进行建模时,应考虑水平间边界形态。同样,由于三角形舌和较宽的矩形舌的溶质速度行为几乎相同,因此仅在野外测量溶质速度将几乎看不到土壤舌形的信息。

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