首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Exergetic, economic and environmental analyses and multi-objective optimization of an SOFC-gas turbine hybrid cycle coupled with an MSF desalination system
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Exergetic, economic and environmental analyses and multi-objective optimization of an SOFC-gas turbine hybrid cycle coupled with an MSF desalination system

机译:SOFC-燃气轮机混合循环与MSF海水淡化系统的充分,经济和环境分析以及多目标优化

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摘要

The present study presents thermodynamic, economic and environmental (emissions cost) modeling of a solid oxide fuel cell-gas turbine (SOFG-GT) hybrid system integrated with a multi stage flash (MSF) desalination unit. A heuristic optimization method, namely, multi-objective genetic algorithm (MOGA) is employed afterwards to obtain the optimal design parameters of the plant. The exergetic efficiency and the total cost rate of the system are considered as the objective functions of the optimization procedure; where, the total cost rate of the system (including the cost rate of environmental impact) is minimized while the exergetic efficiency is maximized. Applying the optimization method, a set of optimal solutions is achieved and the final selected optimal design leads to an exergetic efficiency of 46.7%, and a total cost of 3.76 million USD/year. The payback time of the selected design is also determined to be about 9 years. Although the determined value for the payback period seems to be relatively high for the proposed plant (due to the high capital cost of the SOFC system), this integrated technology is expected to be promising in the near future as the capital costs of SOFCs are decreasing and their operational lifetimes are increasing.
机译:本研究提出了集成了多级闪蒸(MSF)脱盐装置的固体氧化物燃料电池-燃气轮机(SOFG-GT)混合系统的热力学,经济和环境(排放成本)模型。之后采用启发式优化方法,即多目标遗传算法(MOGA)来获得植物的最佳设计参数。系统的充分利用效率和总成本率被视为优化程序的目标函数;其中,系统的总成本率(包括环境影响的成本率)最小,而精力充沛的效率最大。应用该优化方法,可获得一组最优解,最终选择的最优设计可产生46.7%的能量效率,总成本为376万美元/年。所选设计的投资回收期也确定为大约9年。尽管对于拟建工厂而言,投资回收期的确定价值似乎相对较高(由于SOFC系统的高昂资本成本),但随着SOFC的资本成本不断下降,这种集成技术有望在不久的将来大有前途并且它们的使用寿命也在增加。

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