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Liquid water transport in parallel serpentine channels with manifolds on cathode side of a PEM fuel cell stack

机译:在PEM燃料电池堆阴极侧带有歧管的平行蛇形通道中的液态水传输

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摘要

Water management in a proton exchange membrane (PEM) fuel cell stack has been a challenging issue on the road to commercialization. This paper presents a numerical investigation of air-water flow in parallel serpentine channels on cathode side of a PEM fuel cell stack by use of the commercial Computational Fluid Dynamics (CFD) software package FLUENT. Different air-water flow behaviours inside the serpentine flow channels with inlet and outlet manifolds were discussed. The results showed that there were significant variations of water distribution and pressure drop in different cells at different times. The "collecting-and-separating effect" due to the serpentine shape of the gas flow channels, the pressure drop change due to the water distribution inside the inlet and outlet manifolds were observed. Several gas flow problems of this type of parallel serpentine channels were identified and useful suggestions were given through investigating the flow patterns inside the channels and manifolds.
机译:在商业化的道路上,质子交换膜(PEM)燃料电池堆中的水管理一直是一个具有挑战性的问题。本文使用商业计算流体动力学(CFD)软件包FLUENT,对PEM燃料电池组阴极侧平行蛇形通道中的空气-水流进行了数值研究。讨论了带有进气歧管和排气歧管的蛇形流动通道内部不同的空气-水流动行为。结果表明,在不同的时间,不同单元中的水分布和压降存在显着变化。观察到由于气体流动通道的蜿蜒形状而产生的“收集和分离效果”,以及由于入口和出口歧管内部的水分布而引起的压降变化。查明了这种平行蛇形通道的几个气体流动问题,并通过研究通道和歧管内部的流动方式给出了有益的建议。

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