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Visualization and analysis of mass transfer phenomena in a three dimensional domain of a low temperature PEMFC

机译:低温PEMFC三维域传质现象的可视化与分析

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The proton exchange membrane fuel cell (PEMFC) is considered as a potential candidate of the hydrogen applications on the power sources in the future. This work depicts the steady-state single phase transport of reactants and water in a three dimensional computational domain of a low temperature Polymer Electrolyte Membrane Fuel Cell. The model computational domain includes anode and cathode flow channels, gas diffusion layers, membrane and catalyst layers. Both anode and cathode mass and momentum transport phenomena in the flow channels, gas diffusion layers (GDLs) and porous electrodes are included in this study. A Computational Fluid Dynamics code using the finite element method (FEM) is applied on the studied domain. Water analysis in the membrane will be discussed in further works. Mass transfer analysis focused on the air flow velocity parameter, a range of values is applied to observe its effect Simulation results show an important molar concentration of water in the cathode side compared to a low one in the anode side. A good oxygen concentration is obtained with an air flow velocity of 0.5 m/s, increasing this value may cause the membrane flooding phenomena.
机译:质子交换膜燃料电池(PEMFC)被认为是未来氢在电源上应用的潜在候选者。这项工作描绘了低温聚合物电解质膜燃料电池的三维计算域中反应物和水的稳态单相传输。模型计算域包括阳极和阴极流动通道,气体扩散层,膜和催化剂层。这项研究包括了阳极和阴极在流动通道,气体扩散层(GDL)和多孔电极中的质量和动量传输现象。使用有限元方法(FEM)的计算流体动力学代码被应用于研究领域。膜中的水分析将在进一步的工作中讨论。传质分析着重于空气流速参数,应用一系列数值以观察其效果模拟结果显示,与阳极侧的低摩尔浓度相比,阴极侧的水摩尔浓度很重要。空气流速为0.5 m / s时可获得良好的氧气浓度,增大该值可能会导致膜溢流现象。

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