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Modelling of polymer electrolyte membrane fuel cells with variable degrees of water flooding

机译:可变注水度的高分子电解质膜燃料电池建模

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Polymer electrolyte membrane (PEM) fuel cells have received increasing attention from both the public and fuel cell community due to their great potential for transport applications. The phenomenon of water flooding in the PEM fuel cells is not well understood, and few modelling studies have included the effect of water flooding. On the other hand, water management is one of the critical issues to be resolved in the design and operation of PEM fuel cells. In the present study, a mathematical model has been formulated for the performance and operation of a single polymer electrolyte membrane fuel cell. This model incorporates all the essential fundamental physical and electrochemical processes occurring in the membrane electrolyte, cathode catalyst layer, electrode backing and flow channel. A special feature of the model is that it includes the effect of variable degree of water flooding in the cathode catalyst layer and/or cathode electrode backing region on the cell performance. The model predictions have been compared with the existing experimental results available in the literature and excellent agreement has been demonstrated between the model results and the measured data for the cell polarisation curves. Hence, this model can be used for the optimisation of PEM fuel cell design and operation, and can serve as a building block for the mode1ling and understanding of PEM fuel cell stacks and systems.
机译:聚合物电解质膜(PEM)燃料电池由于其在运输应用中的巨大潜力,已受到公众和燃料电池社区的越来越多的关注。 PEM燃料电池中的水驱现象尚未得到很好的理解,很少有模型研究包含水驱的影响。另一方面,水的管理是PEM燃料电池设计和运行中要解决的关键问题之一。在本研究中,已经为单个聚合物电解质膜燃料电池的性能和运行建立了数学模型。该模型结合了发生在膜电解质,阴极催化剂层,电极背衬和流动通道中的所有基本的基本物理和电化学过程。该模型的一个特色是,它包括在阴极催化剂层和/或阴极电极背衬区域中水淹程度的变化对电池性能的影响。已将模型预测与文献中现有的现有实验结果进行了比较,并且已证明模型结果与细胞极化曲线的测量数据之间具有极好的一致性。因此,该模型可用于优化PEM燃料电池的设计和运行,并可作为建模和了解PEM燃料电池堆和系统的基础。

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