Effects of Groundwater Abstraction and Desalination Brine Injection on a Middle Miocene Aquifer of the El-Dabaa Area, Northern Coast of Egypt

A. Embaby, Ayman A. Ahmed, Tawfik Mahran, A. El-Sayed, A. Masoud
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Abstract

: The lack of freshwater supplies in the El-Dabaa area on the northern coast of Egypt is a challenge to development plans, particularly concerning the groundwater aquifer limits. Saltwater desalination is a reliable solution to water shortages. This study was conducted to assess the environmental impact of the abstraction operations from the groundwater in the Middle Miocene aquifer and the effect of the rejected brine resulting from the desalination plant on groundwater using numerical modeling. The calibrated transient model was used to predict the impacts of rejected water discharge. The forecasting scenario results indicate the decline of the aquifer's potentiometric surface to reach its maximum value of 1.4 m at well 3 within the study area by 2040. The radius of the affected area by drawdown is about 550 m, and the drawdown is generally decreased far away from the location of extraction wells (feeding wells). The salinity of the aquifer in the future scenario is affected by the rejected water inflow due to the high coefficient of permeability of the aquifer in the study area. The salinity increases to reach its maximum value of 40919 ppm at each reject well site and its maximum value of 37860 ppm at feed well 2 sites within the study area by the 2040 year. In contrast, most of the study area, mainly feed well 3, wasn't affected by rejected water. The radius of the affected area by salinity is about 700 m around the reject wells site by 2040.
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埃及北部海岸El-Dabaa地区中中新世含水层地下水抽取和海水淡化盐水注入的影响
埃及北部海岸的El-Dabaa地区缺乏淡水供应,这对发展计划是一个挑战,特别是对地下水含水层的限制。海水淡化是解决水资源短缺的可靠方法。本文采用数值模拟的方法,对中中新世含水层地下水抽取作业的环境影响和海水淡化厂产生的废弃盐水对地下水的影响进行了评价。利用标定后的暂态模型对污水排放的影响进行了预测。预测情景结果表明,到2040年,研究区3井含水层电位面下降幅度最大,达到1.4 m。受压降影响的区域半径约为550 m,压降一般在远离抽采井(注水井)位置的地方减小。由于研究区含水层的高渗透系数,未来情景下含水层的盐度会受到拒绝进水的影响。到2040年,研究区域内每个弃井点的盐度都将增加,达到最大值40919 ppm,饲料井2点的盐度达到最大值37860 ppm。相比之下,大部分研究区域,主要是3号井,没有受到弃水的影响。到2040年,受盐度影响的区域半径约为700 m。
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