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Novel architectures of polymer electrolyte membrane fuel cells: Efficiency enhancement and cost reduction

机译:聚合物电解质膜燃料电池的新型架构:提高效率和降低成本

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Three novel architectures of proton exchange membrane fuel cells (PEMFCs), called circular, square and octagonal duct-shaped architectures, are introduced and analyzed numerically. A three-dimensional computational fluid dynamics (CFD) code is used to solve the equations for a single domain of the cell under steady state and non-isothermal conditions. The numerical results are in reasonable agreement with the experimental data over a wide range of current density. The distributions of oxygen, hydrogen and water mass fraction, current density and temperature are studied for the three introduced configurations. The circular- and square-duct configurations show considerably better performance and offer several advantages over the conventional PEMFC configuration. These advantages are related to the way in which the reactant gases are supplied to the flow field, to the shorter channels used and to the lower cost of the PEMFC due to the less bipolar plates needed.
机译:介绍了三种新颖的质子交换膜燃料电池(PEMFC)结构,分别称为圆形,方形和八边形导管形结构,并对其进行了数值分析。三维计算流体动力学(CFD)代码用于在稳态和非等温条件下求解单元单域的方程。在较宽的电流密度范围内,数值结果与实验数据基本吻合。研究了三种引入结构的氧气,氢气和水的质量分数,电流密度和温度的分布。与传统的PEMFC配置相比,圆管和方管配置显示出更好的性能,并具有多个优点。这些优点与将反应气体供应到流场的方式,所使用的较短通道以及由于所需的双极板较少而降低了PEMFC的成本有关。

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