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Gas-phase particle image velocimetry (PIV) for application to the design of fuel cell reactant flow channels

机译:气相颗粒图像测速仪(PIV)用于燃料电池反应物流道的设计

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摘要

Because the parasitic load on most polymer electrolyte fuel cell systems is dominated by pressure losses across the flow fields, understanding the flow channel dynamics has garnered significant recent attention. The current work is aimed at enabling advanced design of reactant flow channels by elucidating the details of the velocity fields within various reactant flow channel geometries. Gas-phase measurement is critical to ensuring that the results are valid for real fuel cell systems, and for application of this technique to the study of flow channels with two-phase obstruction phenomena. In the current research, gas-phase velocity fields have been measured using particle image velocimetry (PIV) in representative geometries, including a straight channel (for technique validation) and a 180 deg switchback with channel-to-land ratio of 1:1. The accuracy of the measurement depends on the ability of the seed particles to follow the flow. Numerical simulations have been performed to develop a criterion for identifying appropriate seed particles. The research presented is a first step toward measuring velocity fields in novel flow reactant channels in operational cells.
机译:由于大多数聚合物电解质燃料电池系统上的寄生负载受流场中压力损失的支配,因此对流道动力学的了解已引起广泛关注。当前的工作旨在通过阐明各种反应物流道几何形状内速度场的细节,实现对反应物流道的高级设计。气相测量对于确保结果对真实的燃料电池系统有效以及将该技术应用于研究具有两相阻塞现象的流道至关重要。在当前的研究中,已使用颗粒图像测速仪(PIV)在具有代表性的几何形状中测量了气相速度场,包括直通道(用于技术验证)和180度折返,通道与地面的比例为1:1。测量的准确性取决于种子颗粒跟随流动的能力。已经进行了数值模拟以开发用于识别适当种子颗粒的标准。提出的研究是测量操作单元中新型流动反应剂通道中速度场的第一步。

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