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Estimating the spatial distribution of artificial groundwater recharge using multiple tracers

机译:使用多个示踪剂估算人工地下水补给的空间分布

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摘要

Stable isotopes of water, organic micropollutants and hydrochemistry data are powerful tools for identifying different water types in areas where knowledge of the spatial distribution of different groundwater is critical for water resource management. An important question is how the assessments change if only one or a subset of these tracers is used. In this study, we estimate spatial artificial infiltration along an infiltration system with stage-discharge relationships and classify different water types based on the mentioned hydrochemistry data for a drinking water production area in Switzerland. Managed aquifer recharge via surface water that feeds into the aquifer creates a hydraulic barrier between contaminated groundwater and drinking water wells. We systematically compare the information from the aforementioned tracers and illustrate differences in distribution and mixing ratios. Despite uncertainties in the mixing ratios, we found that the overall spatial distribution of artificial infiltration is very similar for all the tracers. The highest infiltration occurred in the eastern part of the infiltration system, whereas infiltration in the western part was the lowest. More balanced infiltration within the infiltration system could cause the elevated groundwater mound to be distributed more evenly, preventing the natural inflow of contaminated groundwater.
机译:水的稳定同位素,有机微污染物和水化学数据是确定区域中不同水类型的有力工具,在这些区域中,不同地下水的空间分布知识对于水资源管理至关重要。一个重要的问题是,如果仅使用这些跟踪器中的一个或子集,评估将如何更改。在这项研究中,我们估算了具有阶段排放关系的渗透系统沿空间的人工渗透,并根据瑞士饮用水生产地区的水化学数据对不同的水类型进行了分类。通过馈入含水层的地表水进行的有管理的含水层补给在受污染的地下水和饮用水井之间形成了水力屏障。我们系统地比较了上述示踪剂的信息,并说明了分布和混合比的差异。尽管混合比例不确定,我们发现所有示踪剂的人工渗透总体空间分布非常相似。最高的渗透发生在渗透系统的东部,而西部的渗透最低。渗透系统内更平衡的渗透可能导致升高的地下水丘更均匀地分布,从而阻止受污染的地下水的自然流入。

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