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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Design of a solar-assisted mechanical vapor compression (MVC) desalination unit for remote areas in the UAE
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Design of a solar-assisted mechanical vapor compression (MVC) desalination unit for remote areas in the UAE

机译:阿联酋偏远地区太阳能辅助机械蒸汽压缩(MVC)脱盐装置的设计

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摘要

Scarcity of fresh water in the United Arab Emirates is a challenging problem particularly for small isolated communities to which water and electricity are difficult and/or costly to transport.Meanwhile,solar radiation in the UAE is exceptionally high around the year,which represents an environmentally safe source for power generation.In the meantime,mechanical vapor compression is an attractive technology suitable for the design of small capacity desalination units with a reasonable degree of mobility and compactness.An autonomous small capacity desalination unit that depends solely on solar power is not practically feasible.This is due to the excessive number of batteries required to back up the system during night time and blackout hours.In view of these facts,we find that a diesel-solar-assisted MVC desalination system represents an optimal solution to provide small communities at remote areas with fresh water while generating enough power for the operators housing and plant operation with minimal impact on the environment.This paper outlines a detailed model for the design of a hybrid solar-diesel powered MVC unit with a fresh water capacity of 120 mVd.Preliminary design of a photovoltaic array to furnish the power required to drive the desalination unit,the control room and the housing of operators is illustrated.Sensitivity analysis of the main cost elements of the plant to design parameters is presented.Finally,the environmental impact of the solar assisted unit is illustrated with respect to CO_2 emissions and atmospheric oxygen consumption.
机译:阿拉伯联合酋长国的淡水短缺是一个具有挑战性的问题,尤其是对于水和电难以运输和/或运输成本高的偏远偏僻社区。同时,阿联酋一年中的太阳辐射异常高,这对环境造成了不利影响。安全的发电来源。与此同时,机械蒸汽压缩是一项有吸引力的技术,适用于设计具有合理程度的活动性和紧凑性的小容量淡化装置。仅靠太阳能发电的自主小容量淡化装置实际上并不实用。可行。这是由于在夜间和停电时间需要大量的电池来备份系统。鉴于这些事实,我们发现柴油太阳能辅助的MVC海水淡化系统是提供小型社区的最佳解决方案在偏远地区提供淡水,同时为操作员的房屋和工厂操作提供足够的电力本文概述了用于设计混合水电120 mVd的太阳能柴油动力MVC装置的详细模型。光伏阵列的初步设计可提供驱动脱盐所需的电力给出了工厂主要成本要素对设计参数的敏感性分析。最后,说明了太阳能辅助装置对CO_2排放和大气氧消耗的环境影响。

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