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Modeling Water Infiltration and Solute Transfer in a Heterogeneous Vadose Zone as a Function of Entering Flow Rates

机译:建模渗流和溶质在非均质渗流区内的渗流与输入流速的关系

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摘要

Due to its rapid movement, preferential flow (PF) in the vadose zone allows much faster contaminant transport, which may have a significant impact on ground-water quality. PF can occur in heterogeneous vadose zones and it strongly depends on hydric and hydraulic conditions like entering flow rates at surface. This study deals with the modeling of the establishment of PF, and related solute transfer during the infiltration phase in a strongly heterogeneous glaciofluvial deposit This deposit is made of four contrasting lithofacies (sand, gravel, bimodal gravel and matrix-free gravel) and lies underneath an urban infiltration basin (Lyon, France). Previous studies have been carried out on this site and linked the regionalization of soil pollution with the lithological heterogeneity. But none of them clearly demonstrated how heterogeneity could impact flow and solute transfer and may explain such a regionalization. In this study, we model flow and solute transfer at the trench scale for both uniform and heterogeneous profiles in order to characterize the effect of lithological heterogeneity. In addition, such a modeling was performed for two different entering flow rates to depict the influence of condition at surface on PF. A key result is that heterogeneity clearly impacts unsaturated flow and solute transfer. Numerical modeling permitted pointing out the existence of PF paths associated with the sedimentary heterogeneity of the glaciofluvial deposit For lower surface fluxes, the sand lens and matrix-free gravel were the sources of capillary barrier effects, leading to a funneled flow and a groundwater recharge characterized by earlier and more dispersed wetting fronts. Such a flow pattern enhances solutes transfer and reduces solute retention by soil. Thus, the effect of heterogeneity on solute transfer is significant, especially for the most reactive solutes.
机译:由于其快速运动,在渗流带中的优先流动(PF)允许更快的污染物传输,这可能对地下水质量产生重大影响。 PF可发生在非均质渗流带中,并且在很大程度上取决于水力和水力条件,例如在地表输入流速。这项研究处理了PF的建立模型,以及强烈异质的冰河相沉积物在渗透阶段的相关溶质转移。该沉积物由四个对比岩相(砂,砾石,双峰砾石和无基质砾石)组成,位于下面一个城市渗透盆地(法国里昂)。在该地点已进行了先前的研究,并将土壤污染的区域化与岩性异质性联系起来。但是他们都没有清楚地表明异质性如何影响流动和溶质转移,并可以解释这种区域化。在这项研究中,我们为均匀和非均质剖面在沟槽尺度上的流动和溶质转移建模,以表征岩性非均质性的影响。另外,对两种不同的进入流量进行了这种建模,以描绘表面条件对PF的影响。关键结果是,异质性明显影响不饱和流动和溶质转移。数值模拟可以指出存在与冰川河流相沉积物非均质性相关的PF路径对于较低的表面通量,沙晶和不含基质的砾石是毛细屏障效应的来源,导致漏斗状流和地下水补给更早,更分散的润湿前沿。这种流动方式增强了溶质的转移并减少了土壤对溶质的保留。因此,非均质性对溶质转移的影响非常明显,尤其是对于大多数反应性溶质而言。

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  • 来源
    《Journal of water resource and protection》 |2015年第13期|1017-1028|共12页
  • 作者单位

    Laboratoire d'Ecologie des Hydrosystemes Naturels et Anthropises (LEHNA), ENTPE, Vaulx-en-Velin, France,Laboratoire de Genie Civil et d'Ingenierie Environnementale-Dechets, Eau, Environnement et Pollutions (LGCIE-DEEP), INSA Lyon, Villeurbanne, France;

    Laboratoire d'Ecologie des Hydrosystemes Naturels et Anthropises (LEHNA), ENTPE, Vaulx-en-Velin, France;

    Laboratoire d'Ecologie des Hydrosystemes Naturels et Anthropises (LEHNA), ENTPE, Vaulx-en-Velin, France;

    Laboratoire de Genie Civil et d'Ingenierie Environnementale-Dechets, Eau, Environnement et Pollutions (LGCIE-DEEP), INSA Lyon, Villeurbanne, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Numerical Modeling; Preferential Flow; Solute Transfer; Infiltration Basin; Vadose Zone;

    机译:数值建模;优先流;溶质转移;渗透盆地渗流区;

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