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Agglomerate modeling of cathode catalyst layer of a PEM fuel cell by the lattice Boltzmann method

机译:PEM燃料电池阴极催化剂层的聚结Boltzmann方法建模

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Lattice Boltzmann method is a relatively new micro-scale modeling technique for complex fluid systems that offers several advantages over more conventional numerical methods and hence has attracted interest of researchers. However, lattice Boltzmann modeling of PEM fuel cell electrodes has faced with some challenges in tackling electrochemical reaction in the catalyst layer. In the present study, a two-dimensional single-phase lattice Boltzmann agglomerate model of the cathode catalyst layer of a PEM fuel cell is developed for the first time. After validation of different aspects of the model, the reactive air flow in a cathode electrode is simulated through a multi-scale lattice Boltzmann approach. Species distributions in the pore region, electrical potential distribution in the electrolyte film, and current density distribution at the interface of membrane and catalyst layer are presented and analyzed; both uniform and non-uniform agglomerate arrangements are simulated. The novel model can be adopted to simulate reactive flow in a cathode catalyst layer with a more complicated arrangement of agglomerates representing a realistic microstructure. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:格子Boltzmann方法是一种相对较新的用于复杂流体系统的微尺度建模技术,与更常规的数值方法相比,它具有一些优点,因此吸引了研究人员的兴趣。然而,PEM燃料电池电极的晶格玻尔兹曼建模在应对催化剂层中的电化学反应方面面临一些挑战。在本研究中,首次开发了PEM燃料电池阴极催化剂层的二维单相晶格玻尔兹曼团聚模型。在验证了模型的各个方面之后,通过多尺度格子Boltzmann方法模拟了阴极电极中的反应气流。给出并分析了孔区域中的物种分布,电解质膜中的电位分布以及膜与催化剂层界面处的电流密度分布。模拟了均匀和不均匀的团聚体布置。可以采用新模型来模拟阴极催化剂层中的反应流,其中附聚物的排列更为复杂,代表实际的微观结构。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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