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Numerical Study on the Cathode Channel Width Ratio for Improving Performance of Air Cooled PEMFC

机译:阴极通道宽度比改善空冷PEMFC性能的数值研究

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In this study, we present the effects of bipolar plate design to control the temperature of the cell and ensure effective water management under an excessive amount of air flow and low humidification conditions in the proton exchange membrane fuel cell (PEMFC). The PEMFC model developed in our previous study is applied to consider a three type of bipolar plate that is defined by ratio of inlet channel width to outlet channel width. Simulation results show that the design which has narrow gas inlet channel and wide gas outlet channel width (wide coolant inlet channel and narrow coolant outlet channel width) make the relative humidity and water concentration increase in the channel and the catalyst layer. Therefore, this study clearly demonstrates that the dehydration phenomenon can be decreased by using design of bipolar plate with narrow gas inlet channel and wide gas outlet channel width(wide coolant inlet channel and narrow coolant outlet channel width)..
机译:在这项研究中,我们提出了双极板设计的效果,以控制质子交换膜燃料电池(PEMFC)中的过量空气流量和低加湿条件下的电池温度,并确保有效的水管理。我们在先前的研究中开发的PEMFC模型用于考虑由入口通道宽度与出口通道宽度之比定义的三种类型的双极板。仿真结果表明,具有较窄的进气通道和较宽的排气通道宽度(较宽的冷却液入口通道和较窄的冷却液出口通道宽度)的设计使通道和催化剂层中的相对湿度和水浓度增加。因此,本研究清楚地表明,通过使用进气通道狭窄且排气通道宽度较宽(冷却液入口通道较宽且冷却液出口通道宽度较窄)的双极板设计,可以减少脱水现象。

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