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Development and multiobjective optimization of an integrated flash-binary geothermal power plant with reverse osmosis desalination and absorption refrigeration for multi-generation

机译:具有反渗透脱水脱水和多代吸收制冷的集成闪二进地热电厂的开发与多目标优化

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摘要

This study investigates the thermodynamic and economic aspects of a multigeneration plant for inherent production of freshwater, power, cooling and heating by utilizing geothermal energy. The developed plant utilizes geothermal energy at a target temperature of 200 degrees C through a single flash-binary power plant with reinjection. The results of the thermodynamic analysis show that the overall plant energy and exergy efficiency of the plant can be as high as 61 % and 37.8 %, respectively, while the plant cost varies between 160-330 $/h. Optimization results show that an optimal exergy efficiency of 58 % is achievable when the plant cost rate is 242 $/h. The results indicate that geothermal driven freshwater production is one of the most economically feasible renewable driven clean production options, while a flash/binary power plant results in higher efficiency and lower electricity costs.
机译:本研究研究了通过利用地热能量来调查多粒植物的热力学和经济方面,用于通过利用地热能量来生产淡水,动力,冷却和加热。开发工厂通过单一闪光二进制电厂的目标温度在目标温度下采用地热能,通过再加重新注射。热力学分析的结果表明,植物的整体植物能量和漏洞效率分别高达61%和37.8%,而工厂成本则在160-330美元之间变化。优化结果表明,当工厂成本率为242美元/小时时,可实现58%的最佳漏洞效率。结果表明,地热驱动的淡水产量是最经济上可行的可再生驱动的清洁生产选择之一,而闪光/二元电厂导致效率更高,电力降低。

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