PEM燃料电池阳极向上和阴极向上加湿温度对氧影响的模拟

Shizhong Chen, Yuhou Wu, Hong Sun, Zhe Sun
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引用次数: 1

摘要

为了了解加湿温度对质子交换膜(PEM)燃料电池阴极氧质量分数的影响,采用三个守恒方程建立了一个模型,并考虑了源项中的重力。建模域由膜、两个催化剂层、两个扩散层和两个通道组成。本文是对物种质量分数的模拟。模拟结果表明,当燃料电池阳极朝上或阴极朝上放置时,重力对水的输运有影响。通过对图片的分析,得出如下结论:由于重力的影响,阴极朝上的燃料电池阴极氧质量分数高于阳极朝上的燃料电池阴极氧质量分数。由于电化学反应的消耗、阴极催化剂层的产水和阳极侧水的输运,氧质量分数随燃料电池通道和厚度的增加而减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of Humidification Temperature Impact on Oxygen between Anode-Upward and Cathode-Upward in PEM Fuel Cell
In order to understand the humidification temperature effect on oxygen mass fraction in the cathode for the PEM(Proton Exchange Membrane) fuel cell, a model was set up by three conservation equations, and it was considered the Gravity in source item. The modeling domain consists of the membrane, two catalyst layers, two diffusion layers, and two channels. It is simulation of species mass fraction in this paper. The results of simulation proved that gravity exerts the effect on the water transport when fuel cell is put with anode-upward or cathode-upward. On analyzing of pictures, it got conclusion as follow: Oxygen mass fraction in cathode of fuel cell with cathode-upward is higher than that with anode-upward because of the effect of gravity. Oxygen mass fraction decreases along with channel and thickness of fuel cell due to electrochem reaction consuming, water production in the cathode catalyst layer and the transport of water from the anode side.
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