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Fluid dynamics performance of different bipolar plates. Part II. Flow through the diffusion layer

机译:不同双极板的流体动力学性能。第二部分流过扩散层

摘要

After studying the velocity and pressure fields inside bipolar plates with different geometries, the analysis has been extended to include the gas passage across the backing or gas diffusion layer (GDL). The gas flow emerging from the porous layer has been monitored using acetone vapor laser-induced fluorescence. The different configurations tested are a parallel commercial case, a set of parallel diagonal channels, a branching cascade-type, and a serpentine distribution of parallel channel blocks. The experimental results have been compared with the predictions obtained from a computational numerical simulation. This study has served to determine the most suitable topology among the tested ones, and has also revealed that knowing the velocity map inside the bipolar plate may not be sufficient to decide if the gas distribution over the catalyst is going to be homogeneous and if a fuel cell is going to operate in an efficient way. © 2008 Elsevier B.V. All rights reserved.
机译:在研究了具有不同几何形状的双极板内部的速度和压力场之后,对分析进行了扩展,以包括穿过背衬或气体扩散层(GDL)的气体通道。从多孔层冒出的气流已使用丙酮蒸气激光诱导的荧光进行了监测。测试的不同配置是一个平行的商业案例,一组平行的对角通道,一个分支级联类型以及一个平行通道块的蛇形分布。实验结果已经与从计算数值模拟获得的预测进行了比较。这项研究有助于确定测试过的拓扑中最合适的拓扑,并且还揭示了了解双极板内部的速度图可能不足以决定催化剂上的气体分布是否将是均匀的,以及燃料是否电池将以有效的方式运行。 ©2008 Elsevier B.V.保留所有权利。

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