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Numerical assessment of dependence of polymer electrolyte membrane fuel cell performance on cathode catalyst layer parameters

机译:高分子电解质膜燃料电池性能对阴极催化剂层参数依赖性的数值评估

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摘要

In this work, a three-dimensional, non-isothermal and two-phase computational fluid dynamics model of a proton exchange membrane (PEM) fuel cell with straight flow field channel is developed and validated. The model is used to predict the performance of the PEM fuel cell with changing parameters of the cathode catalyst layer which was usually assumed to be composed of spherical agglomerates. The effect of cathode catalyst layer parameters such as catalyst layer thickness, ionomer film thickness, agglomerate size and porosity, on the current density and power output of the PEM fuel cell is investigated. The numerical results reveal that competitive influence of resistances to transport of species, electron and proton within the cathode catalyst layer determines the performance of the PEM fuel cell in terms of area specific power density (W cm~(-2)) and mass specific power density (kW g_(Pt)~(-1)).
机译:在这项工作中,建立并验证了具有直流场通道的质子交换膜(PEM)燃料电池的三维,非等温和两相计算流体动力学模型。该模型用于通过改变阴极催化剂层的参数来预测PEM燃料电池的性能,该参数通常被假定为由球形团聚物组成。研究了阴极催化剂层参数(例如催化剂层厚度,离聚物膜厚度,附聚物尺寸和孔隙率)对PEM燃料电池的电流密度和功率输出的影响。数值结果表明,在阴极催化剂层内,物质,电子和质子的传输阻力的竞争影响决定了PEM燃料电池的性能,这取决于面积比功率密度(W cm〜(-2))和质量比功率。密度(kW g_(Pt)〜(-1))。

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