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溶质运移模拟以管理地表水引起的地下水污染。

Solute transport modelling to manage groundwater pollution from surface water resources.

机构信息

UTM Centre for Industrial & Applied Mathematics, Ibnu Sina Institute for Scientific & Industrial Research, Universiti Teknologi Malaysia, Johor Bahru, Malaysia.

UTM Centre for Industrial & Applied Mathematics, Ibnu Sina Institute for Scientific & Industrial Research, Universiti Teknologi Malaysia, Johor Bahru, Malaysia; Department of Mathematical Sciences, Universiti Teknologi Malaysia, Johor Bahru, Malaysia.

出版信息

J Contam Hydrol. 2020 Aug;233:103662. doi: 10.1016/j.jconhyd.2020.103662. Epub 2020 Jun 10.

Abstract

This article provides an analytical solute transport model to investigate the potential of groundwater contamination by polluted surface water in a two dimensional domain. The clogging of streambed which makes the aquifer partially penetrated by the stream, is considered in the model. The impacts of pumping process, hydraulic conductivity and clogging layer on the quality of water produced from nearby drinking water wells are evaluated. It is found that results are consistent with numerical simulation conducted by MODFLOW software. Moreover, the model is applied using data of contamination occurrence in Malaysia, where high contaminants concentrations are found close to streams. Results show that the pumping activities (rate and time period) are crucial factors when evaluating the risk of groundwater contamination from surface water. Additionally, this study illustrates that the increase in either hydraulic conductivity or leakance coefficient parameters due to the clogging layer will enlarge the area of contamination. The model is able to determine the suitable pumping rate and location of the well so that the contamination plume never reaches the extraction well, which is useful in constructing riverbank filtration sites.

摘要

本文提供了一个分析性溶质运移模型,以研究二维区域中受污染地表水对地下水污染的可能性。该模型考虑了河床堵塞的情况,河床堵塞使得含水层部分被溪流穿透。评估了抽水过程、水力传导率和堵塞层对附近饮用水井出水水质的影响。结果与 MODFLOW 软件进行的数值模拟结果一致。此外,还使用马来西亚发生污染的相关数据对模型进行了应用,结果表明在靠近溪流的地方发现了高浓度污染物。结果表明,抽水活动(速率和时间段)是评估地表水对地下水污染风险的关键因素。此外,本研究表明,由于堵塞层导致的水力传导率或泄漏系数参数的增加,将会扩大污染面积。该模型能够确定合适的抽水速率和井的位置,以确保污染羽流永远不会到达抽水井,这在构建河岸过滤场地时非常有用。

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