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Three-dimensional numerical analysis of PEM fuel cells with straight and wave-like gas flow fields channels

机译:具有直线和波状气体流场通道的PEM燃料电池的三维数值分析

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摘要

Using a three-dimensional computational model, numerical simulations are performed to investigate the performance characteristics of proton exchange membrane fuel cells (PEMFCs) incorporating either a conventional straight gas flow channel or a novel wave-like channel. The simulations focus particularly on the effect of the wave-like surface on the gas flow characteristics, the temperature distribution, the electrochemical reaction efficiency and the electrical performance of the PEMFCs at operating temperatures ranging from 323 K to 343 K. The numerical results reveal that the wave-like surface enhances the transport of the reactant gases through the porous layer, improves the convective heat transfer effect, increases the gas flow velocity, and yields a more uniform temperature distribution. As a result, the efficiency of the catalytic reaction is significantly improved. Consequently, compared to a conventional PEMFC, the PEMFC with a wave-like channel yields a notably higher output voltage and power density.
机译:使用三维计算模型,进行了数值模拟,以研究结合了常规直通气体流道或新型波状通道的质子交换膜燃料电池(PEMFC)的性能特征。模拟特别关注波状表面在323 K至343 K的工作温度下对PEMFC的气体流动特性,温度分布,电化学反应效率和电性能的影响。数值结果表明:波浪状表面增强了反应气体通过多孔层的传输,提高了对流传热效果,增加了气体流速,并产生了更均匀的温度分布。结果,显着提高了催化反应的效率。因此,与常规的PEMFC相比,具有波状通道的PEMFC产生明显更高的输出电压和功率密度。

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