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Involving integrated seawater desalination-power plants in the optimal design of water distribution networks

机译:使海水淡化综合电厂参与配水管网的优化设计

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Water and energy consumption has increased substantially over the last decades. Water scarcity has led to an increase in the extraction of fresh water from aquifers, dams and lakes, and it has produced serious overexploitation problems. Furthermore, the population growth in urbanized areas and the increase in water and energy demands in industry, agriculture and households have amplified this problem. As consequence, there are several regions where is almost impossible to satisfy the water demands using the available water resources. In this context, the use of alternative water resources such as reclaimed water, rainwater harvesting and the potential use of desalinated water can be an option. However, desalinated seawater is very expensive because the high energy consumption, and this way to integrate a seawater desalination plant to a power plant to simultaneously produce clean water and power can be an attractive option. This way, this paper proposes an optimization formulation for synthesizing water networks to satisfy water and energy demands in a macroscopic system involving the use of existing water resources and the installation of integrated seawater desalination-power plants. A case study from Mexico (where satisfying the water demands has become a serious problem) is presented. Results show that the integrated system is able to satisfy the current water demands, the excess desalinated water can be used to recharge the overexploited aquifers and interesting profits can be obtained from the sales of power. (C) 2015 Elsevier B.V. All rights reserved.
机译:在过去的几十年中,水和能源的消耗已大大增加。缺水导致从含水层,水坝和湖泊中提取淡水的增加,并且造成了严重的过度开采问题。此外,城市化地区的人口增长以及工业,农业和家庭用水和能源需求的增加也加剧了这一问题。结果,有几个地区几乎不可能使用可用的水资源来满足用水需求。在这种情况下,可以选择使用替代水,例如再生水,雨水收集和潜在使用淡化水。然而,由于高能量消耗,淡化海水非常昂贵,并且将海水淡化厂与发电厂整合以同时产生清洁水和电力的这种方式可能是有吸引力的选择。通过这种方式,本文提出了一种优化的公式,用于合成一个水网络,以满足一个宏观系统的水和能源需求,该系统涉及对现有水资源的利用和对海水淡化综合电站的安装。本文介绍了墨西哥的一个案例研究(满足水需求已成为一个严重的问题)。结果表明,该集成系统能够满足当前的用水需求,多余的淡化水可用于为过度开采的含水层补给水,并且可以通过出售电力获得可观的利润。 (C)2015 Elsevier B.V.保留所有权利。

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