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首页> 外文期刊>Chemical Science International Journal >Economic Design of OTEC Power Plant withConcurrent Production of Desalinated Water a€“A Case Study
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Economic Design of OTEC Power Plant withConcurrent Production of Desalinated Water a€“A Case Study

机译:同时生产淡水的OTEC电厂的经济设计-案例研究

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Ocean Thermal Energy Conversion (OTEC) power plants offer a green source of renewable energy. Since India is a tropical country and a peninsula, the prospects of OTEC power generation are extremely bright in India. Among the three modes of operation (open cycle, closed cycle and hybrid cycle) of OTEC system, the hybrid mode is most promising. However, one of the chief technical obstacles in OTEC power plant design is that since the temperature difference driving force available is of the order of 10-15oC only, the size of the heat exchanger (evaporator / condenser) required becomes exorbitantly large. The use of variable area design, developed by the author and his co-workers, has been recommended in this connection. Such a design provides substantial increase in heat transfer coefficient (350 to 450% increase) with insignificant increase in the associated pressure drop penalty (118 to 120% increase). The required size of the heat exchangers thus gets reduced tremendously, while the operating cost does not increase materially, thereby making design and operation of OTEC power plants economical and cost- effective. The performance characteristics of such heat exchangers (Variable Area Heat Exchangers or VAEs) are discussed in detail in this paper. Further, in the hybrid mode of operation of OTEC system, low pressure steam is produced by the flash evaporation of sea water and this steam is used as heating fluid in the evaporator (of variable area design) to evaporate the working fluid (ammonia, freon). The condensate from this exchanger thus forms desalinated water, which constitutes a valuable by-product of the process. Apart from generating clean electric power around the clock (without consuming any valuable raw material), this power plant thus produces several gallons of desalinated water also per day.
机译:海洋热能转换(OTEC)电厂提供绿色可再生能源。由于印度是一个热带国家和半岛,因此OTEC发电的前景在印度非常光明。在OTEC系统的三种操作模式(打开循环,关闭循环和混合循环)中,混合模式是最有前途的。但是,OTEC电厂设计的主要技术障碍之一是,由于可用的温差驱动力仅为10-15oC左右,因此所需的热交换器(蒸发器/冷凝器)尺寸过大。在这方面,建议使用由作者及其同事开发的可变面积设计。这种设计提供了传热系数的大幅增加(增加了350至450%),而相关的压降损失却没有明显增加(增加了118至120%)。因此,所需的热交换器尺寸大大减少,而运行成本却没有实质性增加,从而使OTEC电厂的设计和运行经济且具有成本效益。本文将详细讨论此类热交换器(可变面积热交换器或VAE)的性能特征。此外,在OTEC系统的混合运行模式下,海水的闪蒸会产生低压蒸汽,并且该蒸汽在(可变面积设计的)蒸发器中用作加热流体以蒸发工作流体(氨,氟利昂) )。因此,来自该交换器的冷凝物形成脱盐水,其构成了该方法的有价值的副产物。除了不间断地产生清洁的电力(不消耗任何有价值的原材料)之外,该发电厂还每天产生几加仑的淡化水。

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