首页> 外文期刊>International Journal of Heat and Mass Transfer >Investigation of current density spatial distribution in PEM fuel cells using a comprehensively validated multi-phase non-isothermal model
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Investigation of current density spatial distribution in PEM fuel cells using a comprehensively validated multi-phase non-isothermal model

机译:使用全面验证的多相非等温模型研究PEM燃料电池中的电流密度空间分布

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摘要

In this study, a three-dimensional (3D) multi-phase non-isothermal model of proton exchange membrane (PEM) fuel cell is present to investigate the current density spatial distributions under different output voltages, temperatures, current densities and relative humidities (RH). Two sets of experimental data are selected for validation, including those from the Los Alamos National Laboratory in the United States and the University of Waterloo in Canada. Reasonable agreements are achieved between the model prediction and experimental measurements, indicative of the validity of this 3D model. In addition, it is found that under a higher RH of 50%, most electric current is produced near the cathode inlet, which is primarily due to the local availability of abundant oxygen and hence small transport polarization. Low current occurs near the outlet of the cathode air flow, as a result of oxygen consumption by the oxygen reduction reaction (ORR). Under a lower RH of 25%, the high current density region shifts to the middle of the fuel cell, which is primarily attributed to hydration of the dry membrane by water production. In our case study, the operating temperature has little impact on the current density distribution.
机译:在这项研究中,提出了质子交换膜(PEM)燃料电池的三维(3D)多相非等温模型,以研究不同输出电压,温度,电流密度和相对湿度(RH)下的电流密度空间分布)。选择两组实验数据进行验证,包括来自美国洛斯阿拉莫斯国家实验室和加拿大滑铁卢大学的实验数据。在模型预测和实验测量之间达成了合理的协议,表明了此3D模型的有效性。另外,发现在50%的较高RH下,大部分电流在阴极入口附近产生,这主要归因于丰富氧气的局部可获得性以及因此小的传输极化。由于氧气还原反应(ORR)消耗的氧气,在阴极气流的出口附近会产生低电流。在较低的RH(相对湿度为25%)下,高电流密度区域移至燃料电池的中部,这主要归因于通过产水使干膜水合。在我们的案例研究中,工作温度对电流密度分布影响很小。

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