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Parametric analysis of an irreversible proton exchange membrane fuel cell/absorption refrigerator hybrid system

机译:不可逆质子交换膜燃料电池/吸收式制冷机混合系统的参数分析

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A hybrid system mainly consisting of a PEMFC (proton exchange membrane fuel cell) and an absorption refrigerator is proposed, where the PEMFC directly converts the chemical energy contained in the hydrogen into electrical and thermal energies, and the thermal energy is transferred to drive the bottoming absorption refrigerator for cooling purpose. By considering the existing irreversible losses in the hybrid system, the operating current density region of the PEMFC permits the absorption refrigerator to exert its function is determined and the analytical expressions for the equivalent power output and efficiency of the hybrid system under different operating conditions are specified. Numerical calculations show that the equivalent maximum power density and the corresponding efficiency of the hybrid system can be respectively increased by 5.3% and 6.8% compared to that of the stand-alone PEMFC. Comprehensive parametric analyses are conducted to reveal the effects of the internal irreversibility of the absorption refrigerator, operating current density, operating temperature and operating pressure of the PEMFC, and some integrated parameters related to the thermodynamic losses on the performance of the hybrid system. The model presented in the paper is more general than previous study, and the results for some special cases can be directly derived from this paper. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一种主要由PEMFC(质子交换膜燃料电池)和吸收式制冷机组成的混合系统,其中PEMFC将氢气中包含的化学能直接转化为电能和热能,并转移热能以驱动底部运动吸收式制冷机用于冷却目的。通过考虑混合动力系统中现有的不可逆损耗,确定了PEMFC的工作电流密度区域,从而确定吸收式制冷机发挥其功能,并指定了不同工作条件下混合动力系统的等效功率输出和效率的解析表达式。数值计算表明,与独立式PEMFC相比,混合系统的等效最大功率密度和相应效率分别提高了5.3%和6.8%。进行了全面的参数分析,以揭示吸收式制冷机内部不可逆性,PEMFC的工作电流密度,工作温度和工作压力以及与热力学损失有关的一些综合参数对混合系统性能的影响。本文中提出的模型比以前的研究更为笼统,某些特殊情况的结果可以直接从本文中得出。 (C)2015 Elsevier Ltd.保留所有权利。

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