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Comparison of water management between two bipolar plate flow-field geometries in proton exchange membrane fuel cells at low-density current range

机译:低密度电流范围内质子交换膜燃料电池中两个双极板流场几何结构水管理的比较

摘要

This experimental research studies some aspects of water formation and management in polymer electrolyte membrane fuel cells (PEMFCs). To this end, two different single cells of 49 cm2 active area have been tested, the first one with a serpentine-parallel geometry and the second with a cascade-type flow-field topology. In order to visualize the processes, flow-field channels have been machined on transparent plastic. Experiments have consisted in both image acquisition using a CCD camera, and simultaneous measurements of pressure drop in both hydrogen and oxygen gas flow paths. It has been observed that with the cascade-type flow-field geometry, water produced in the cathode does not flood the gas flow channels and, consequently, can be drained in an easy way. On the other hand, it has also been verified that saturated condition for the hydrogen gas flow at the anode side produces water condensation and channel flooding for the serpentine-parallel flow-field topology. Time fluctuations in the pressure drop of the gas flow have been detected and are associated to some transient process inherent to water formation and management. © 2008 Elsevier B.V. All rights reserved.
机译:这项实验研究研究了聚合物电解质膜燃料电池(PEMFC)中水的形成和管理的某些方面。为此,已经测试了两个不同的有效面积为49 cm2的单个单元,第一个单元具有蛇形平行几何形状,第二个单元具有级联型流场拓扑结构。为了使过程可视化,已在透明塑料上加工了流场通道。实验包括使用CCD相机进行图像采集,以及同时测量氢气和氧气流动路径中的压降。已经观察到,在级联型流场几何结构中,在阴极中产生的水不会淹没气体流动通道,因此可以以简单的方式排出。另一方面,也已经证实,对于在蜿蜒平行的流场拓扑结构而言,在阳极侧的氢气流的饱和条件会产生水冷凝和通道溢流。已检测到气流压降的时间波动,并与水形成和管理所固有的某些瞬态过程相关。 ©2008 Elsevier B.V.保留所有权利。

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