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Visualization of the gas flow in fuel cell bipolar plates using molecular flow seeding and micro-particle image velocimetry

机译:使用分子流注入和微粒图像测速技术可视化燃料电池双极板中的气体流动

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Main components of proton exchange membrane fuel cells are bipolar plates that electrically connect the electrodes and provide a gas flow to the membrane. We investigate the flow in the channel structures of bipolar plates. Flow seeding is used to visualize the propagating and mixing gas stream. It is shown that a part of the gas is transported perpendicularly to the channel structure. An analysis of the diffusion compared with the convection shows different transport behavior for both flow directions. Additionally, the convective flow field is investigated in detail near the channel wall using Micro-PIV in a Reynolds-number-scaled liquid fluid system. For a more exact comparison of the experimental setups, flow seeding in both gas and liquid systems is performed.
机译:质子交换膜燃料电池的主要组件是电连接电极并向膜提供气流的双极板。我们研究了双极板通道结构中的流动。流动播种用于可视化传播和混合气流。结果表明,一部分气体垂直于通道结构传输。与对流相比,对扩散的分析表明,两个流动方向的传输行为不同。另外,在雷诺数标度的液体流体系统中,使用Micro-PIV对通道壁附近的对流流场进行了详细研究。为了更精确地比较实验装置,在气体和液体系统中均进行了流动接种。

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