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Stress mitigation of conventional water resources in water-scarce areas through the use of renewable energy powered desalination plants: An application to the Canary Islands

机译:通过使用可再生能源脱盐工厂的水资源稀缺区域传统水资源的应力减缓:对加那利群岛的应用

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Climate change conditions in the last decades have derived in a significant reduction of rivers’ levels, irregularity of rainfall and, thus, difficulties in accessing to drinkable water. This situation is especially dramatical in islanded environments, such as the Canary Islands in Spain, where these restrictions to water resources have conducted to an overexploitation of aquifers and wells, with the deterioration of the environment that this fact entails. For this reason, desalination plants have become essential, and efforts must be done to reduce their impact and costs, as the involved processes for water desalination are high energy intensive. In this research paper, an optimized size hybrid wind and solar photovoltaic power plant is proposed to feed a desalination plant under the approach of not only feed the desalination process, but also provide the power grid with clean energy, taken advantage of the surplus electricity production. This way, not only the water resources stress is mitigated (through the desalting water production), but also the grid benefits from the integration of a distributed renewable energy source (DRES). Moreover, the business model is improved as the cost of drinkable water production is reduced and the power plant owner receives extra incomes from the water sales. Optimization results for a case study in Gran Canaria island shows that, considering the power dispatch in the island, the remuneration limits for power delivery and the remuneration for provided water, the optimal DRES associated with a desalination plant providing 5600?msup3/sup/day of desalted water and a maximum annual electricity injection to the power grid of 5.88?GWh/year, an hybrid solar PV and wind generation installation with electrochemical storage is a feasible solution that makes the Levelized Cost of Electricity ( LCOE ) achieve a singular reduced value despite considering the additional costs of the desalination plant, although financial help must be provided to reduce the Payback Time.
机译:最近几十年的气候变化条件在河流水平的显着降低,降雨不规则,因此,进入饮用水的困难。这种情况在岛屿化环境中特别戏剧性,如西班牙的加那利群岛,这些情况对水资源的限制进行了对含水层和井的过度开采,这种事实的环境恶化了。出于这个原因,脱盐厂已成为必要的,必须努力降低其影响和成本,因为水脱盐的涉及过程是高能量密集的。在本研究论文中,提出了一种优化的尺寸混合风和太阳能光伏电厂,以在不仅饲料脱盐过程的方法下喂养脱盐设备,而且还提供了具有清洁能源的电网,利用剩余电力生产。这样,不仅可以减轻水资源应力(通过脱盐水生产),而且来自分布式可再生能源(DRES)的集成,网格益处。此外,由于饮用水生产成本降低,电厂所有者从水销售额收到额外收入,因此商业模式得到改善。大加拿大岛的案例研究的优化结果表明,考虑到岛上的电力调度,电力输送的薪酬限制和提供的水的薪酬,与海水淡化设备相关的最佳驱动器提供5600?M 3 /脱盐水的日子和最大年电网的电网为5.88?gwh /年,具有电化学存储的混合型太阳能光伏和风发电装置是一种可行的解决方案,使电力调整为电力(Lcoe )尽管在海水淡化厂的额外成本,但必须提供财务帮助以减少投资回收期的额外费用,尽量达到单一降低的价值。

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