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首页> 外文期刊>Journal of power sources >An experimental and numerical investigation on the cross flow through gas diffusion layer in a PEM fuel cell with a serpentine flow channel
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An experimental and numerical investigation on the cross flow through gas diffusion layer in a PEM fuel cell with a serpentine flow channel

机译:具有蛇形流道的PEM燃料电池中穿过气体扩散层的错流的实验和数值研究

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A serpentine flow channel is one of the most common and practical channel layouts for a polymer electrolyte membrane (PEM) fuel cell since it ensures the removal of water produced in a cell with acceptable parasitic load. During the reactant flows along the flow channel, it can also leak or cross to neighboring channel via the porous gas diffusion layer due to the high pressure gradient caused by the short distance. Such a cross flow leads to a larger effective flow area altering reactant flow in the flow channel so that the resultant pressure and flow distributions are substantially different from that without considering cross flow, even though this cross flow has largely been ignored in previous studies. In this work, a numerical and experimental study has been carried out to investigate the cross flow in a PEM fuel cell. Experimental measurements revealed that the pressure drop in a PEM fuel cell is significantly lower than that without cross flow. Three-dimensional numerical simulation has been performed for wide ranges of flow rate, permeability and thickness of gas diffusion layer to analyze the effects of those parameters on the resultant cross flow and the pressure drop of the reactant streams. Considerable amount of cross flow through gas diffusion layer has been found in flow simulation and its effect on pressure drop becomes more significant as the permeability and the thickness of gas diffusion layer are increased. The effects of this phenomenon are also crucial for effective water removal from the porous electrode structure and for estimating pumping energy requirement in a PEM fuel cell, it cannot be neglected for the analysis, simulation, design, operation and performance optimization of practical PEM fuel cells.
机译:蛇形流动通道是聚合物电解质膜(PEM)燃料电池最常用和实用的通道布局之一,因为它可以确保去除带有可接受寄生负载的电池中产生的水。在反应物沿着流动通道流动的过程中,由于短距离导致的高压梯度,反应物还可以经由多孔气体扩散层泄漏或穿过相邻的通道。这样的错流导致较大的有效流面积,从而改变了流道中的反应物流量,因此所产生的压力和流量分布与不考虑错流的情况大不相同,即使该错流在先前的研究中已被大大忽略。在这项工作中,进行了数值和实验研究,以研究PEM燃料电池中的错流。实验测量表明,PEM燃料电池中的压降明显低于没有横流的情况。已经对气体扩散层的流速,渗透率和厚度的宽范围进行了三维数值模拟,以分析这些参数对所得横流和反应物流的压降的影响。在流动模拟中发现了相当大量的通过气体扩散层的错流,并且随着气体扩散层的渗透性和厚度的增加,其对压降的影响变得更加明显。这种现象的影响对于从多孔电极结构中有效去除水以及估计PEM燃料电池中的泵送能量需求也至关重要,在实际PEM燃料电池的分析,模拟,设计,操作和性能优化中不可忽略。

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