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Three-dimensional computational fluid dynamics model of a tubular-shaped PEM fuel cell

机译:管状PEM燃料电池的三维计算流体动力学模型

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A full three-dimensional, non-isothermal computational fluid dynamics model of a tubular-shaped proton exchange membrane (PEM) fuel cell has been developed. This comprehensive model accounts for the major transport phenomena in a PEM fuel cell: convective and diffusive heat and mass transfer, electrode kinetics, and potential fields. In addition to the tubular-shaped geometry, the model feature an algorithm that allows for more realistic representation of the local activation overpotentials which leads to improved prediction of the local current density distribution. Three-dimensional results of the species profiles, temperature distribution, potential distribution, and local current density distribution are presented. The model is shown to be able to understand the many interacting, complex electrochemical, and transport phenomena that cannot be studied experimentally.
机译:建立了管状质子交换膜(PEM)燃料电池的完整三维非等温计算流体动力学模型。这个综合模型解释了PEM燃料电池中的主要传输现象:对流和扩散传热与传质,电极动力学和势场。除了管状几何形状外,该模型还具有一种算法,该算法可以更真实地表示局部激活超电势,从而改善了对局部电流密度分布的预测。提出了物种分布,温度分布,电势分布和局部电流密度分布的三维结果。该模型显示出能够理解许多无法通过实验研究的相互作用,复杂的电化学和传输现象。

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