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首页> 外文期刊>Journal of Energy Engineering >Experimental and Numerical Studies of Enhanced Interdigitated Flow Field for PEM Fuel Cells
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Experimental and Numerical Studies of Enhanced Interdigitated Flow Field for PEM Fuel Cells

机译:PEM燃料电池增强型流动场的实验与数值研究

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摘要

The presence of blockages in the flow field (FF) of proton exchange membrane fuel cells (PEMFCs) increases the mass transport of reactants toward the catalyst layer regions and improves cell performance. In this paper, the effects of channel blockage in a conventional interdigitated FF of PEMFCs are investigated both numerically and experimentally. The tested cell contains a 25-cm(2) active area tested at four air flow rates-0.4, 0.7, 1.0, and 1.5 standard liters per minute (slpm). For numerical modeling, a three-dimensional simulation of a repeating unit of a whole cell was used. Blocks were placed in a staggered arrangement along the neighboring flow channels in order to push reacting species into the gas diffusion layer uniformly. The numerical and experimental data showed good agreement. In this paper, the influence of flow channel blockages is analyzed on velocity contours, the distribution of reactants and local current density over catalyst layer, and polarization and power density curves. Blockages increase the pressure drop along the flow channels and also balance of plant pumping power that drives the working fluid within the FF. Hence, the effect of indentation on pressure drop and pumping power is also measured. The results show that channels blocking at 1.5 slpm improve the limiting current density by 9% and enhance the maximum net power (generated power from which the pumping power is subtracted) by 22%. (C) 2021 American Society of Civil Engineers.
机译:质子交换膜燃料电池(PEMFCs)的流场(FF)中堵塞的存在增加了反应物朝向催化剂层区域的质量传输,提高了细胞性能。在本文中,在数值和实验中研究了在PEMFC的常规互化FF中的通道堵塞的影响。测试电池含有25cm(2)个有源区域,在四个空气流速-0.4,0.7,1.0和1.5标准升/分钟(SLPM)上测试。对于数值建模,使用了整个细胞的重复单元的三维模拟。沿着相邻的流动通道以交错的布置置于交错的布置中,以均匀地将反应物质推入气体扩散层。数值和实验数据显示出良好的一致性。本文在速度轮廓上分析了流动通道堵塞的影响,反应物分布和催化剂层的局部电流密度,偏振和功率密度曲线。堵塞增加了流动通道的压降,并且还增加了驱动FF内的工作流体的植物泵浦电力的平衡。因此,还测量压痕对压降和泵送功率的影响。结果表明,在1.5 SLPM下阻挡的通道将限制电流密度提高了9%,并增强了最大净功率(泵送电量的产生功率,从中减去了泵送电源的电力)达到22%。 (c)2021年美国土木工程师协会。

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