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首页> 外文期刊>Inzynieria Chemiczna i Procesowa >THREE-DIMENSIONAL COMPUTATIONAL FLUID DYNAMICS MODELLING OF A PROTON EXCHANGE MEMBRANE FUEL CELL WITH A SERPENTINE MICRO-CHANNEL DESIGN
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THREE-DIMENSIONAL COMPUTATIONAL FLUID DYNAMICS MODELLING OF A PROTON EXCHANGE MEMBRANE FUEL CELL WITH A SERPENTINE MICRO-CHANNEL DESIGN

机译:蛇形微通道设计质子交换膜燃料电池的三维计算流体动力学建模

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The aim of this paper was to demonstrate the feasibility of using a Computational Fluid Dynamics tool for the design of a novel Proton Exchange Membrane Fuel Cell and to investigate the performance of serpentine micro-channel flow fields. A three-dimensional steady state model consisting of momentum, heat, species and charge conservation equations in combination with electrochemical equations has been developed. The design of the PEMFC involved electrolyte membrane, anode and cathode catalyst layers, anode and cathode gas diffusion layers, two collectors and serpentine micro-channels of air and fuel. The distributions of mass fraction, temperature, pressure drop and gas flows through the PEMFC were studied. The current density was predicted in a wide scope of voltage. The current density - voltage curve and power characteristic of the analysed PEMEC design were obtained. A validation study showed that the developed model was able to assess the PEMFC performance.
机译:本文的目的是展示使用计算流体动力学工具的可行性,用于设计新的质子交换膜燃料电池并研究蛇形微通道流动场的性能。 已经开发了一种三维稳态模型,其组成的动量,热,物种和电荷保护方程与电化学方程组成。 PEMFC涉及电解质膜,阳极和阴极催化剂层,阳极和阴极气体扩散层,两个收集器和蛇形微通道的空气和燃料。 研究了质量分数,温度,压降和气体流过PEMFC的分布。 在广泛的电压范围内预测电流密度。 获得了分析的PEMEC设计的电流密度 - 电压曲线和功率特性。 验证研究表明,开发的模型能够评估PEMFC性能。

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