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Characterization of Flow Within a Fuel Cell Manifold Subject to Asymmetric Inlet Conditions

机译:燃料电池歧管内流动在不对称进气条件下的流动特性

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Achievement of flow uniformity among cells of a fuel cell stack continues to be an issue in fuel cell design and can affect performance and longevity. While many studies have sought to examine the effects of manifold and cell geometries on stack pressure drops and current density, few have provided detailed mapping of the manifold flowfield or examined the effect of reactant supply pipe bends on this flow, as these bends can introduce flow asymmetries within the pipe downstream of the bend. A simplified scaled up model of a proton exchange membrane (PEM) fuel cell was fitted with different inlet flow configurations, including straight piping and piping containing a 90 deg bend and 180 deg bend prior to entering the manifold. Particle image velocimetry (PIV) was used to obtain mean and fluctuating velocity statistics within the manifold and in individual cells. These distributions were compared with previous results using a partially developed square inlet profile, as well as available experimental and computational data in the literature. The presence of pipe bends resulted in highly skewed flow within the manifold, which also affected the flow distribution among individual cells.
机译:燃料电池堆的电池之间的流动均匀性的实现仍然是燃料电池设计中的问题,并且会影响性​​能和寿命。尽管许多研究试图检查歧管和电池的几何形状对电池堆压降和电流密度的影响,但很少提供详细的歧管流场图或检查反应物供应管弯曲对这种流动的影响,因为这些弯曲会引入流动弯管下游管道内的不对称性。质子交换膜(PEM)燃料电池的简化放大模型装配有不同的入口流量配置,包括直管和进入歧管之前包含90度弯曲和180度弯曲的管道。粒子图像测速(PIV)用于获得歧管内和单个单元中的均值和脉动速度统计信息。使用部分开发的方形入口轮廓以及文献中可用的实验和计算数据,将这些分布与以前的结果进行了比较。弯管的存在导致歧管内的流量高度偏斜,这也影响了各个单元之间的流量分配。

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