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首页> 外文期刊>International Journal of Refrigeration >Performance analyzes of an integrated phosphoric acid fuel cell and thermoelectric device system for power and cooling cogeneration
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Performance analyzes of an integrated phosphoric acid fuel cell and thermoelectric device system for power and cooling cogeneration

机译:磷酸燃料电池和电力和冷却热电装置系统的性能分析

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摘要

In addition to electricity generation, phosphoric acid fuel cell (PAFC) produces a significant amount of waste heat. In this study, a hybrid system mainly consisting of a PAFC, a thermoelectric generator, and a thermoelectric cooler is proposed to recover the produced waste heat aiming for performance enhancement. Considering thermodynamic and electrochemical irreversible losses within the system, an analytical relationship between the dimensionless electric current of the thermoelectric element and the current density of the PAFC is derived. Analytical formulas for power density and efficiency of the hybrid system are derived. The characteristics and the optimum criteria evaluating the performance parameters are revealed for the studied system. Numerical solutions show that the power density and efficiency of the hybrid system allow 2.3% and 2.8% larger than that of a stand-alone PAFC, respectively. The present hybrid system is found to be feasible and effective. Comprehensive parametric studies are conducted to analyze the effects of operating conditions and design parameters on the proposed system. The conclusions drawn can provide theoretical guidance for PAFC performance enhancements and system designs.
机译:除了发电之外,磷酸燃料电池(PAFC)还产生大量的废热。在本研究中,提出了一种混合系统,该混合系统由PAFC,热电发电机和热电冷却器组成,以回收产生的废热旨在用于性能增强。考虑到系统内的热力学和电化学不可逆转损失,推导了热电元件的无量子电流与PAFC的电流密度之间的分析关系。衍生出用于功率密度和杂交系统效率的分析公式。为研究系统揭示了评估性能参数的特性和最优标准。数值解决方案表明,混合系统的功率密度和效率分别比独立PAFC大的2.3%和2.8%。发现本混合系统是可行和有效的。进行了综合的参数研究,以分析在所提出的系统上的操作条件和设计参数的影响。所绘制的结论可以为PAFC性能增强和系统设计提供理论指导。

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