首页> 外文期刊>Journal of Fuel Cell Science and Technology >Channel Geometry Effect for Proton Exchange Membrane Fuel Cell With Serpentine Flow Field Using a Three-Dimensional Two-Phase Model
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Channel Geometry Effect for Proton Exchange Membrane Fuel Cell With Serpentine Flow Field Using a Three-Dimensional Two-Phase Model

机译:二维二维模型研究蛇形流场质子交换膜燃料电池的通道几何效应

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摘要

This study presents a complete three-dimensional, two-phase transport model for proton exchange membrane fuel cells based on the two-fluid method, which couples the mass, momentum, species, and electrical potential equations. The different liquid water transport mechanisms in the flow channels, gas diffusion layers, catalyst layers, and membrane are modeled using two different liquid water transport equations. In the flow channels, gas diffusion layers, and catalyst layers, the generalized Richards equation is used to describe the liquid water transport including the effect of the pressure gradient, capillary diffusion, evaporation and condensation, and electro-osmotic, while in the membrane, the liquid water transport equation only takes into account the effect of back diffusion and electro-osmotic. Springers model is utilized on the catalyst layer-membrane interface to maintain continuum of the liquid water distribution. The model is used to investigate the effect of flow channel aspect ratio on the performance of fuel cells with single and triple serpentine flow fields. The predictions show that for both flow fields, the cell performance improves with decreasing aspect ratio. The aspect ratio has less effect on the cell performance for the triple serpentine flow field than for the single serpentine flow field due to the weaker under-rib convection.
机译:本研究基于双流体方法,提出了一个完整的三维两相质子交换膜燃料电池输运模型,该模型耦合了质量,动量,种类和电势方程。使用两个不同的液态水传输方程对流道,气体扩散层,催化剂层和膜中的不同液态水传输机制进行了建模。在流道,气体扩散层和催化剂层中,广义理查兹方程用于描述液体水的传输,包括压力梯度,毛细管扩散,蒸发和冷凝以及电渗透的影响,而在膜中,液态水传输方程只考虑了反向扩散和电渗效应。在催化剂层-膜界面上使用Springers模型以维持液态水分布的连续性。该模型用于研究流道纵横比对具有单和三蛇形流场的燃料电池性能的影响。预测表明,对于两个流场,单元性能都随着纵横比的减小而提高。由于肋下对流较弱,因此长宽比对三层蛇形流场的影响比单层蛇形流场的影响小。

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