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首页> 外文期刊>Journal of Energy Engineering >Ecologic and Sustainable Objective Performance Analysis of a Molten Carbonate Fuel Cell-Heat Engine Hybrid System
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Ecologic and Sustainable Objective Performance Analysis of a Molten Carbonate Fuel Cell-Heat Engine Hybrid System

机译:熔融碳酸盐燃料电池-热机混合动力系统的生态和可持续目标性能分析

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In this paper, a molten carbonate fuel cell (MCFC)-heat engine hybrid system is investigated in terms of the environment and sustainability. The MCFC is a premier power generator, and the high-temperature waste heat supplied by the fuel cell is used as a heat source at an irreversible heat engine. This irreversible heat engine is the secondary power generator of the system. The thermo-environmental function and exergetic sustainability index are applied to design an environmentally friendly MCFC-heat engine hybrid system. Results are obtained numerically, and an ecologically friendly operation range is attempted to determine the considered system. According to calculations, the maximum power density of the hybrid system is 4,242.62 Wm(-2), and the maximum thermo-environmental function density and the exergetic sustainable index are equal to 0.0309 Wmpts(-1) m(2) and 107.36, respectively. Finally, it is recommended that current density should be chosen between current density at the maximum exergetic sustainable index and current density at the maximum thermo-environmental function for a less environmentally harmful system. (c) 2017 American Society of Civil Engineers.
机译:本文从环境和可持续性的角度研究了熔融碳酸盐燃料电池(MCFC)-热机混合系统。 MCFC是主要的发电机,燃料电池提供的高温废热被用作不可逆热机的热源。这种不可逆的热力发动机是系统的二次发电机。利用热环境功能和高能持续性指标设计了环保型MCFC-热机混合动力系统。通过数字获得结果,并尝试通过生态友好的操作范围来确定所考虑的系统。根据计算,混合动力系统的最大功率密度为4,242.62 Wm(-2),最大热环境功能密度和有效能持续指数分别等于0.0309 Wmpts(-1)m(2)和107.36。 。最后,对于环境危害较小的系统,建议在最大能动可持续指数的电流密度和最大热环境功能的电流密度之间选择电流密度。 (c)2017年美国土木工程师学会。

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