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Investigation of bank filtration in gravel and sand aquifers using time-series analysis

机译:使用时间序列分析调查砾石和砂质含水层中的堤岸过滤

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摘要

Drinking-water wells in the vicinity of rivers may be influenced by infiltration of river water. In the context of drinking-water protection the decisive questions concern the fraction of river infiltrate in the pumped water and the residence time in the aquifer. For this purpose, tracer experiments may be performed. At larger rivers, however, such tests require the injection of large amounts of the tracer. As an alternative to artificial-tracer tests, we present methods in which time series of electric conductivity and temperature are used for quantitative statements regarding mixing ratios and residence times. We recommend a multi-step approach consisting of: (1) a qualitative analysis of the time series, (2) a spectral filtering of the seasonal temperature and conductivity signals, (3) a cross-correlation analysis, and (4) a non-parametric deconvolution of the time series. We apply these methods to three sites in the aquifer of the Thur Valley in the Swiss Plateau. At sites without good connection between river and groundwater or where the river gains groundwater, the elaborate methods of time-series analysis are not applicable, but the time series itself will reveal such conditions. At sites with continuous river water infiltration, we can reconstruct the breakthrough curve of a tracer test without releasing an artificial tracer into the river.
机译:河流附近的饮用水井可能会受到河水渗透的影响。在饮用水保护的背景下,决定性的问题涉及泵入水中河流渗透的比例以及在含水层中的停留时间。为此,可以执行示踪剂实验。但是,在较大的河流中,此类测试需要注入大量的示踪剂。作为人工示踪剂测试的替代方法,我们提出了将电导率和温度的时间序列用于有关混合比和停留时间的定量说明的方法。我们建议采用多步骤方法,其中包括:(1)对时间序列进行定性分析;(2)对季节温度和电导率信号进行频谱过滤;(3)互相关分析;(4)非相关性分析。时间序列的参数反卷积。我们将这些方法应用于瑞士高原瑟尔山谷含水层中的三个位置。在河流与地下水之间没有良好连接的地方或河流获得地下水的地方,无法使用精心设计的时间序列分析方法,但是时间序列本身会揭示这种情况。在河水不断渗入的地点,我们可以重建示踪剂测试的穿透曲线,而无需将人造示踪剂释放到河中。

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