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Three Dimensional Analysis of a PEM Fuel Cell with the Shape of a Fermat Spiral for the Flow Channel Configuration

机译:流动通道配置为费马螺旋形PEM燃料电池的三维分析

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This work presents the analysis of a non-isothermal three-dimensional model in single phase of a PEM fuel cell with an innovative flow field path in the form of the Fermat spiral, i.e. two concentric spirals. The model is used to predict the current density contours and the water content in all of the zones of the fuel cell. The three-dimensional model includes: the gas flow channels with the shape of the new geometry proposed, the current collectors, gas diffusion layers, catalyst layers on both sides of the model, anode and cathode, and a proton exchange membrane in between. The model solves the energy equation, mass conservation, and species transport equations, including the source terms due the electrochemical effects occurring in the cell. The results show a higher average current density than the fuel cells with conventional flow paths, showing also that the current density attained is more uniform from the inlet to the outlet of the flow channels.
机译:这项工作介绍了一种具有创新流场路径的PEM燃料电池单相非等温三维模型的分析,该流场路径采用费马螺旋(即两个同心螺旋)的形式。该模型用于预测燃料电池所有区域中的当前密度等值线和水含量。三维模型包括:具有建议的新几何形状的气体流动通道,集电器,气体扩散层,模型两侧的催化剂层,阳极和阴极以及之间的质子交换膜。该模型求解能量方程,质量守恒和物种迁移方程,包括由于电池中发生的电化学效应而引起的源项。结果显示出比具有常规流动路径的燃料电池更高的平均电流密度,还表明所获得的电流密度从流动通道的入口到出口更均匀。

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