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Performance equations for a polymer electrolyte membrane fuel cell with unsaturated cathode feed

机译:具有不饱和阴极进料的聚合物电解质膜燃料电池的性能方程

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A mathematical formulation for the cathode of a membrane electrode assembly of a polymer electrolyte membrane fuel cell is proposed, in which the effect of unsaturated vapor feed in the cathode is considered. This mechanistic model formulates the water saturation front within the gas diffusion layer with an explicit analytical expression as a function of operating conditions. The multi-phase flows of gaseous species and liquid water are correlated with the established capillary pressure equilibrium in the medium. In addition, less than fully hydrated water contents in the polymer electrolyte and catalyst layers are considered, and are integrated with the relevant liquid and vapor transfers in the gas diffusion layer. The developed performance equations take into account the influences of all pertinent material properties on cell performance using first principles. The mathematical approach is logical and concise in terms of revealing the underlying physical significance in comparison with many other empirical data fitting models.
机译:提出了一种用于高分子电解质膜燃料电池的膜电极组件的阴极的数学公式,其中考虑了阴极中不饱和蒸气进料的影响。该机理模型用一个明确的解析表达式根据工作条件来公式化气体扩散层中的水饱和锋。气态物质和液态水的多相流与介质中已建立的毛细管压力平衡相关。另外,考虑到在聚合物电解质和催化剂层中少于完全水合的水含量,并且与在气体扩散层中的相关的液体和蒸气转移结合在一起。所开发的性能方程式使用第一原理考虑了所有相关材料特性对电池性能的影响。与揭示许多其他经验数据拟合模型相比,数学方法在揭示潜在的物理意义方面是合乎逻辑的和简洁的。

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