Mustafa Shaymaa, Darwish Mohamad, Bahar Arifah, Aziz Zainal Abdul
Department of Mathematical Sciences, Faculty of Science, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysia.
UTM Centre for Industrial and Applied Mathematics (UTM-CIAM), Ibnu Sina Institute for Scientific and Industrial Research (ISI-SIR) Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysia.
Ground Water. 2019 Sep;57(5):756-763. doi: 10.1111/gwat.12868. Epub 2019 Mar 9.
Analytical studies for well design adjacent to river banks are the most significant practical task in cases involving the efficiency of riverbank filtration systems. In times when high pollution of river water is joined with increasing water demand, it is necessary to design pumping wells near the river that provide acceptable amounts of river water with minimum contaminant concentrations. This will guarantee the quality and safety of drinking water supplies. This article develops an analytical solution based on the Green's function approach to solve an inverse problem: based on the required level of contaminant concentration and planned pumping time period, the shortest distance to the riverbank that has the maximum percentage of river water is determined. This model is developed in a confined and homogenous aquifer that is partially penetrated by the stream due to the existence of clogging layers. Initially, the analytical results obtained at different pumping times, rates and with different values of initial concentration are checked numerically using the MODFLOW software. Generally, the distance results obtained from the proposed model are acceptable. Then, the model is validated by data related to two pumping wells located at the first riverbank filtration pilot project conducted in Malaysia.
对于靠近河岸的井设计进行分析研究,在涉及河岸过滤系统效率的情况下是最重要的实际任务。在河水污染严重且用水需求不断增加的时期,有必要在河流附近设计抽水井,以提供污染物浓度最低且水量可接受的河水。这将保证饮用水供应的质量和安全。本文基于格林函数法开发了一种解析解来解决一个反问题:根据所需的污染物浓度水平和计划的抽水时间段,确定距离河岸最短且河水占比最大的位置。该模型是在一个承压且均质的含水层中建立的,由于存在堵塞层,河流仅部分穿透该含水层。最初,使用MODFLOW软件对在不同抽水时间、速率以及不同初始浓度值下获得的解析结果进行数值检验。总体而言,从所提出模型得到的距离结果是可接受的。然后,通过与马来西亚首个河岸过滤试点项目中两口抽水井相关的数据对该模型进行验证。