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Evaluation of a solar powered distillation unit as a mitigation to water scarcity and climate change in Cyprus

机译:评估太阳能蒸馏装置,以缓解塞浦路斯的水资源短缺和气候变化

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Cyprus, an island facing water scarcity periods throughout its history, has to cope with even more intense periods due to climate change as it is predicted by several climate models. The aim of the present study is to evaluate the performance of a single-effect distillation unit and the potential of its integration with a concentrated solar power system as a mitigation technique to the water scarcity. Specifically, a single-effect distillation unit for seawater desalination was developed and its performance in terms of performance ratio (PR) (ratio of distillate product and steam fed to the unit) was experimentally investigated. The main parameters examined were the thermal input power, and the temperature and flow rate of the inlet seawater. For several seawater flow rates, three different initial heat loads were used (T-st,T-1, T-st,T-2, T-st,T-3). Experiments were repeated for two seawater inlet temperatures, T-sw1, T-sw2. A one-dimensional model based on conservation of mass and energy was developed to predict the performance of the device. The results showed that lower heat input load results to a higher value of the PR of the unit and also under constant heat load, a higher temperature of the seawater lead to higher distillate product. The developed model adequately captured the behavior of the device. Thus, it is concluded that such a unit should be expanded into a multiple-effect unit and also implemented with a concentrated solar power system as a mitigation technique to the water scarcity of the island.
机译:塞浦路斯是一个在整个历史中都面临缺水时期的岛屿,正如几种气候模式所预测的那样,由于气候变化,塞浦路斯不得不应对更加严峻的时期。本研究的目的是评估单效蒸馏装置的性能以及将其与集中式太阳能发电系统集成作为缓解缺水技术的潜力。具体而言,开发了用于海水淡化的单效蒸馏装置,并通过性能比(PR)(馏分产物和送入该装置的蒸汽的比率)来研究其性能。检查的主要参数是热输入功率,进口海水的温度和流速。对于几种海水流速,使用了三种不同的初始热负荷(T-st,T-1,T-st,T-2,T-st,T-3)。重复了两个海水入口温度T-sw1,T-sw2的实验。建立了基于质量和能量守恒的一维模型来预测设备的性能。结果表明,较低的热输入负荷会导致装置的PR值更高,并且在恒定的热负荷下,海水的温度越高,馏出产物就越高。开发的模型充分捕获了设备的行为。因此,得出的结论是,这种装置应扩展为多效装置,并且还应采用集中式太阳能发电系统作为缓解岛屿缺水的技术。

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