首页> 外文期刊>International journal of hydrogen energy >Mathematical modelling and parametric study on a 30 kW_(el) high temperature PEM fuel cell based residential micro cogeneration plant
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Mathematical modelling and parametric study on a 30 kW_(el) high temperature PEM fuel cell based residential micro cogeneration plant

机译:基于30 kW_(el)高温PEM燃料电池的居民微型热电联产厂的数学建模和参数研究

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摘要

A new configuration for an existing PEM fuel cell based residential micro-cogeneration system has been proposed in which the conventional low temperature PEM fuel cell is replaced with a high temperature one. Detailed mathematical models for the fuel processor, HT- PEM fuel cell stack and all other components of the plant have been developed. The electrical and thermal performance of the system have been determined and the corresponding results have been compared with the performance indices achieved for the previous plant. The electrical efficiency and the primary energy savings index obtained for the proposed system are 29.21% and 17.50% respectively which are considerably higher than the ones obtained for the existing LT-PEM based plant (21.18% and 6.07%). In order to enlighten our understanding of the behaviour of the system a parametric study on the key parameters of the system has been carried out.
机译:已经提出了一种用于现有的基于PEM燃料电池的住宅微型热电联产系统的新配置,其中常规的低温PEM燃料电池被高温电池所替代。已经开发了用于燃料处理器,HT-PEM燃料电池堆和工厂所有其他组件的详细数学模型。确定了系统的电气和热性能,并将相应的结果与先前工厂的性能指标进行了比较。拟议系统获得的电效率和一次能源节约指数分别为29.21%和17.50%,远高于现有的基于LT-PEM的工厂(21.18%和6.07%)。为了启发我们对系统行为的理解,对系统关键参数进行了参数研究。

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