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An experimental study of water table recharge by seepage losses from a ditch with intermittent flow

机译:间歇性沟渠渗水损失对地下水位补给的实验研究

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Farmed catchments in the Mediterranean area often exhibit dense networks of ditches which are also preferential zones of water table recharge, and thereby of groundwater contamination. This study presents an experimental analysis of seepage losses and related groundwater recharge patterns during a typical Mediterranean runoff event at the scale of a ditch located above a shallow water table. The objectives were (ⅰ) to evaluate the patterns of water table recharge by seepage in a ditch, (ⅱ) to study the main flow processes occurring during recharge, and (ⅲ) to estimate solute propagation in case of contaminated flow in the ditch. The field observation indicated three major points. Firstly, they showed that seepage losses during a runoff event in a ditch can rapidly lead to a significant recharge of a shallow water table. Secondly, the recharge induces a groundwater mound much larger than the event plume. The infiltrated water and the accompanying solutes remained in the vicinity of the ditch. The patterns of groundwater recharge and contamination appeared very different. Lastly, both unsaturated and saturated-piston flow processes were observed which suggests that a variably-saturated flow modelling approach ought to be used to simulate the ditch-water shallow table interaction. Finally, the study indicates that the patterns of water table recharge and contamination in Mediterranean catchments with dense ditches network vary largely in space and time, and will require dense monitoring networks to estimate the evolution of the average contamination levels.
机译:地中海地区的养殖集水区经常有密集的沟渠网络,这也是地下水位补给的优先区域,因此也受到地下水污染。这项研究提出了在典型的地中海径流事件期间,在浅水位以上的沟渠尺度上的渗漏损失和相关的地下水补给模式的实验分析。目的是(ⅰ)通过沟渠中的渗水评估地下水位补给的方式;(ⅱ)研究补给过程中发生的主要水流过程;(ⅲ)估计在沟渠中被污染的水流中溶质的扩散。现场观察指出了三个要点。首先,他们表明,在径流事件中,沟渠中的渗漏损失会迅速导致浅层地下水的大量补给。其次,补给产生的地下水丘比事件羽流大得多。渗入的水和伴随的溶质保留在沟渠附近。地下水补给和污染的模式似乎有很大不同。最后,观察到非饱和和饱和活塞的流动过程,这表明应该使用可变饱和的流动建模方法来模拟沟渠-水浅表相互作用。最后,研究表明,具有密集沟渠网络的地中海流域的地下水位补给和污染模式在空间和时间上有很大不同,并且将需要密集的监测网络来估计平均污染水平的演变。

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