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NUMERICAL ANALYSIS OF THE CROSS-FLOW UNDER THE LAND IN A SERPENTINE FLOW FIELD OF A PEM FUEL CELL

机译:PEM燃料电池蛇形流场下陆地交叉流量的数值分析

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Serpentine flow-fields are widely used in proton exchange membrane (PEM) fuel cells due to their various advantages, including providing a proper compromise between pressure drop and water removal capability. One of the advantages of serpentine flow fields is the cross-flow under the land through the gas diffusion layer (GDL) due to the pressure difference between adjacent channels. In this study, a three-dimensional PEM fuel cell model is developed to study the cross-flow effect under the land for both across and along the land directions. Simulation results of the flow distribution along and across the channel, and the relationship between the cross-flow and the pressure difference are presented. A parametric study is conducted to investigate the effect of the GDL permeability on the cross-flow rate. The cross-flow rate increases as the permeability becomes larger because the cross-flow velocity. However, cross-flow rate reaches an asymptotic value when the permeability is greater than 10~(-9) (m~2) since the pressure difference between adjacent channels becomes smaller. The effect of the cross-flow on the local oxygen mass fraction is also investigated. The results show that oxygen concentrations in some locations are significantly higher due to the cross-flow under the land and secondary flows in the channel. Finally, by comparing average current densities between under the channels and the land areas, it is shown that the performance of the cell gradually decreases across the channel/land direction.
机译:由于各种优点,蛇纹石流场广泛用于质子交换膜(PEM)燃料电池中,包括在压降和水去除能力之间提供适当的折衷。蛇纹石流场的一个优点是由于相邻通道之间的压力差,通过气体扩散层(GDL)下的陆地下的交叉流动。在该研究中,开发了一种三维PEM燃料电池模型,以研究跨越陆路和陆地方向的土地下的交叉流动效果。展示了沿和跨越通道的流动分布的仿真结果,以及交叉流动与压力差之间的关系。进行参数研究以研究GDL渗透率对交叉流速的影响。由于磁流速度变大,交叉流量增加随着横流速而变大。然而,当渗透率大于10〜(m〜2)时,交叉流速达到渐近值,因为相邻通道之间的压力差变小。还研究了交叉流对局部氧气质量分数的影响。结果表明,由于陆路下的陆地和二次流动下的交叉流动,某些位置中的氧浓度显着更高。最后,通过比较通道和陆地区域之间的平均电流密度,表明细胞的性能逐渐减小通道/陆方向。

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