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Modeling non-isothermal two-phase multicomponent flow in the cathode of PEM fuel cells

机译:对PEM燃料电池阴极中的非等温两相多组分流进行建模

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摘要

A two-dimensional, non-isothermal, two-phase, multicomponent model is presented for the cathode of a PEM fuel cell, which can be appliedusing both conventional and interdigitated gas distributors. Gas and liquid transport are described by an extended Darcy's law using a continuum approach. The most important material properties like wettability, permeability, porosity and tortuosity are determined experimentally. For the determination of the capillary pressure-saturation data, a method based on mercury intrusion porosimetry has been applied. The relative permeability was then derived from this data. It turned out however, that a more detailed description of the partial wetting behaviour of hydrophobic electrodes is of decisive importance. The two-dimensional distribution of the reactants and products is obtained and depends strongly on the flow configuration and the operational conditions. The model results were compared to experimental data and qualitative information on the effects of various operating conditions and on material properties were obtained.
机译:针对PEM燃料电池的阴极,提出了一种二维,非等温,两相,多组分模型,该模型可以使用常规的和指状的气体分配器来应用。气体和液体的运输由达西定律采用连续方法描述。最重要的材料性能如润湿性,渗透性,孔隙率和曲折度是通过实验确定的。为了确定毛细管压力饱和度数据,已经应用了基于压汞法的压汞法。然后从该数据得出相对渗透率。然而,事实证明,疏水电极的部分润湿行为的更详细描述具有决定性的重要性。获得了反应物和产物的二维分布,并且在很大程度上取决于流动配置和操作条件。将模型结果与实验数据进行比较,并获得了有关各种操作条件和材料性能的定性信息。

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