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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >A novel cogeneration system: A proton exchange membrane fuel cell coupled to a heat transformer
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A novel cogeneration system: A proton exchange membrane fuel cell coupled to a heat transformer

机译:一种新颖的热电联产系统:质子交换膜燃料电池与热转换器相连

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摘要

This study focuses on the potential of a novel cogeneration system which consists of a 5 kW proton exchange membrane fuel cell (PEMFC) and an absorption heat transformer (AHT). The dissipation heat resulting from the operation of the PEMFC would be used to feed the absorption heat transformer, which is integrated to a water purification system. Therefore, the products of the proposed cogeneration system are heat, electricity and distilled water. The study includes a simulation for the PEMFC as well as experimental results obtained with an experimental AHT facility. Based on the simulation results, experimental tests were performed in order to estimate the performance parameters of the overall system. This is possible due to the matching in power and temperatures between the outlet conditions of the simulated fuel cell and the inlet requirements of the AHT. Experimental coefficients of performance are reported for the AHT as well as the overall cogeneration efficiency for the integrated system. The results show that experimental values of coefficient of performance of the AHT and the overall cogeneration efficiency, can reach up to 0.256 and 0.571, respectively. This represents an increment in 12.4% of efficiency, compared to the fuel cell efficiency working individually. This study shows that the combined use of AHT systems with a PEMFC is possible and it is a very feasible project to be developed in the Centro de Investigacion en Energia (Centre of Energy Research), Mexico.
机译:这项研究的重点是新型热电联产系统的潜力,该系统由5 kW质子交换膜燃料电池(PEMFC)和吸收式热转换器(AHT)组成。 PEMFC的运行产生的散发热量将用于吸收吸收式热转换器,该吸收式热转换器已集成到水净化系统中。因此,建议的热电联产系统的产品是热,电和蒸馏水。该研究包括对PEMFC的仿真以及使用实验性AHT设施获得的实验结果。根据仿真结果,进行了实验测试,以估计整个系统的性能参数。由于模拟燃料电池的出口条件与AHT的入口要求之间的功率和温度匹配,这是可能的。报告了AHT的实验性能系数以及集成系统的整体热电联产效率。结果表明,AHT的性能系数和整体热电联产效率的实验值分别可以达到0.256和0.571。与单独工作的燃料电池效率相比,这表示效率提高了12.4%。这项研究表明,将AHT系统与PEMFC结合使用是可能的,这是在墨西哥能源研究中心(能源研究中心)开发的一个非常可行的项目。

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