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Sustainable groundwater management in coastal aquifer of Sinai using evolutionary algorithms

机译:西奈沿海含水层的可持续地下水管理使用进化算法

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Sinai Peninsula represents Egypt's strategic extension and historical link to its Arab neighbors. Owing to its important and critical location, the Egyptian Government budget for the coming year gives priority to a broad national development project in Sinai. However, the scarcity of freshwater in coastal arid regions of Sinai, coupled with the desired development and the ongoing population growth, makes optimal sustainable water management crucial. This paper is aiming at achieving the optimum groundwater management strategy in a pilot area at Sinai to support the sustainability of the development project. The evolutionary computational algorithms were used to achieve the abovementioned sustainable management strategy. The objective function of the developed management strategy aims to maximize the net benefit from groundwater withdrawal, while minimizing the invasion of saltwater front inside the aquifer. Also, to ensure sustainable development the objective function considers minimizing well interference effects. The results show that the developed framework can be effectively and efficiently used to achieve global solutions of the examined groundwater management problem.
机译:西奈半岛代表埃及的战略延伸和历史联系到阿拉伯邻国。由于其重要且批评的位置,即将到来的埃及政府预算优先考虑在西奈的广泛国家发展项目。然而,西奈沿海干旱地区淡水的稀缺与所需的发展和持续的人口增长,使得最佳的可持续水管理至关重要。本文旨在实现西奈试点领域的最佳地下水管理策略,以支持发展项目的可持续性。进化计算算法用于实现上述可持续管理策略。发达管理战略的客观职能旨在最大限度地利用地下水撤离,同时最大限度地减少含水层内部盐水前沿的侵袭。此外,为了确保可持续发展,客观函数考虑最小化井干扰效应。结果表明,发达的框架可以有效且有效地用于实现所检查地下水管理问题的全球解决方案。

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