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Quantification of Groundwater Recharge from an Ephemeral Stream into a Mountainous Karst Aquifer

机译:从临时河流入山区喀斯特含水层的地下水补给量

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Sustainable groundwater production from karst aquifers is primarily dictated by its recharge rate. Therefore, it is essential to accurately quantify annual groundwater recharge in order to limit overexploitation and to evaluate artificial methods for groundwater enrichment. Infiltration during erratic flood events in karst basins may substantially contribute to aquifer recharge. However, the complicated nature of karst systems, which are characterized in part by multiple springs, sinkholes, and losing/gaining streams, impede accurate quantification of the actual contribution of flood waters to groundwater recharge. In this study, we aim to quantify the proportion of groundwater recharge accrued during runoff events in a karst aquifer. The role of karst conduits on flash flood infiltration was examined during four flood and controlled runoff events in the Soreq creek near Jerusalem, Israel. We distinguished between direct infiltration, percolation through karst conduits, and diffuse infiltration—the latter of which is most affected by evapotranspiration. A water balance was calculated for the 2014/15 hydrological year using the Hydrologic Engineering Center-Hydrologic Modelling System (HEC-HMS). Simulations show that 6.8 to 19.2% of the annual recharge volume was added to the aquifer from infiltration of runoff losses along the creek through the karst system.
机译:喀斯特含水层的可持续地下水生产主要取决于其补给率。因此,必须准确地量化年度地下水补给量,以限制过度开采,并评估用于富集地下水的人工方法。喀斯特盆地不稳定的洪水事件期间的渗透可能会大大促进含水层的补给。但是,岩溶系统的复杂性(部分特征是有多个泉水,污水坑和损失/增加的溪流)阻碍了对洪水对地下水补给的实际贡献的准确定量。在这项研究中,我们旨在量化岩溶含水层径流事件中累积的地下水补给比例。在以色列耶路撒冷附近的索雷克河(Soreq Creek)附近的四次洪水和受控径流事件中,研究了岩溶导管在山洪渗透中的作用。我们区分了直接渗透,通过岩溶导管的渗滤和扩散渗透(后者受蒸发蒸腾的影响最大)。使用水文工程中心-水文建模系统(HEC-HMS)计算了2014/15年水文年度的水平衡。模拟表明,径流损失沿喀斯特系统的渗透渗透增加了蓄水层的年补给量的6.8%至19.2%。

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