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Influence of seawater temperature on thermal efficiency of an integrated electric power generation and water desalination plant

机译:海水温度对综合发电与海水淡化厂热效率的影响

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This paper is an attempt to demonstrate the effect of sea water temperature on the overall efficiency of electric power generation combined with a water desalination plant. The plant under consideration is composed of two thermally and mechanically coupled loops: a steam power plant loop to produce electricity and a reverse osmosis loop including pressure exchange system to provide drinkable water from seawater. The reverse osmosis loop including pressure exchange system is known to be the state of the art desalination technology for obtaining fresh water. The waste pressure from reverse osmosis is transferred to the low pressure concentrate in a pressure exchange system to save a considerable amount of energy. It is shown in the body of paper that the sea water inlet temperature has a direct impact on the overall efficiency of the system. This is fundamentally accomplished by the rejected heat of Rankine cycle in a condenser. As a result, this paper shows that the overall efficiency of the combined plant is found to be highest when sea water temperature at the condenser exit is elevated to around 30 degrees C.
机译:本文试图证明海水温度与海水淡化厂相结合对发电总效率的影响。所考虑的工厂由两个热力耦合和机械耦合的回路组成:用于发电的蒸汽发电厂回路和包括用于从海水中提供饮用水的压力交换系统的反渗透回路。已知包括压力交换系统的反渗透回路是用于获得淡水的最先进的脱盐技术。来自反渗透的废液压力在压力交换系统中转移到低压浓缩液中,以节省大量能量。论文正文显示,海水进口温度直接影响系统的整体效率。这从根本上是通过冷凝器中朗肯循环的排热来实现的。结果,该论文表明,当冷凝器出口处的海水温度升高到30摄氏度左右时,联合工厂的整体效率最高。

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