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Validation of the dual pumping technique for level-determined groundwater sampling in a contaminated aquifer

机译:双重抽水技术在受污染含水层中确定水平的地下水采样的验证

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The dual pumping technique (DPT) was introduced recently as a new and inexpensive technique to measure the level-determined solute concentrations in groundwater. Using two pumps, one placed near the groundwater table and one placed near the bottom of a fully screened well, this technique allows to determine vertical concentration profiles for solutes in groundwater given that additional information about the influx distribution into the well is known. Until now, however, the DPT was applied only in an aquifer with a thickness of about 40 m and the validation was weakened by the lack of a reliable reference system. The present study aims to investigate the applicability of the DPT for shallow (thickness <10 m) and unconfined aquifers and to validate the results of the DPT with a better reference system. For this purpose the DPT was applied in Menziken, Switzerland to a gravel aquifer contaminated with petroleum hydrocarbons. Solute concentrations measured at that site with an established drive point sampling technique (Ram technique) were taken as a reference to demonstrate the applicability of the DPT. Results for eight different solutes showed a reasonable agreement between both techniques. An algorithm was developed that allowed the computation of a single solute concentration profile incorporating measured data from both pumps, It was possible to demonstrate that this alternative algorithm can improve the quality of the solute concentration profiles obtained by the DPT, This indicates that the DPT is a useful tool for determining the vertical concentration profiles in groundwater for conditions similar to those in Menziken (unconfined gravel aquifer, screen length less than 10 m). (C) 2000 Elsevier Science B.V. All rights reserved. [References: 27]
机译:最近引入了双重抽水技术(DPT),它是一种新的廉价技术,用于测量地下水中溶质的水平确定浓度。使用两个泵,一个泵放置在地下水位附近,一个泵放置在一个经过全面筛选的井的底部附近,如果已知有关流入井中流量分布的其他信息,则该技术可以确定地下水中溶质的垂直浓度分布。然而,到目前为止,DPT仅适用于厚度约为40 m的含水层,由于缺乏可靠的参考系统,验证工作受到了削弱。本研究旨在调查DPT在浅层(厚度<10 m)和无限制含水层中的适用性,并使用更好的参考系统验证DPT的结果。为此,DPT在瑞士Menziken应用于受石油碳氢化合物污染的砾石含水层。使用建立的驱动点采样技术(Ram技术)在该位置测量的溶质浓度作为参考,以证明DPT的适用性。八种不同溶质的结果表明两种技术之间存在合理的一致性。开发了一种算法,该算法允许结合来自两个泵的测量数据来计算单个溶质浓度曲线,这可能证明该替代算法可以提高DPT获得的溶质浓度曲线的质量,这表明DPT是在确定类似于Menziken(地下水位小于10 m的无限制砾石含水层)条件下地下水中垂直浓度分布的有用工具。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:27]

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