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An analytic model of membrane humidifier for proton exchange membrane fuel cell

机译:质子交换膜燃料电池膜加湿器的解析模型

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An essential requirement for an operating PEM fuel cell is providing proper water content in the membrane. To avoid water flooding an appropriate water balance is required. Here, an analytic model of a planar membrane humidifier for PEM fuel cell is proposed where the effect of dimensional parameters includes membrane thickness, membrane area and channel hydraulic diameter are investigated. A Non-linear governing equations system is developed and solved. At each stage, the outlet temperatures, the water and heat transfer rates, relative humidity and the dew point at dry side outlet are presented and discussed. The humidifier is evaluated based on the decrease in difference between the dew point at wet side inlet and dry side outlet which leads to humidifier better performance. The results show that an increase in membrane thickness results in a decrease in dew point at dry side outlet which indicates a weak humidifier performance. Vaster membrane area can enhance humidifier performance. Here, big hydraulic diameters are not recommended.
机译:对运行中的PEM燃料电池的基本要求是在膜中提供适当的水分。为了避免水泛滥,需要适当的水平衡。在此,提出了一种用于PEM燃料电池的平面膜加湿器的解析模型,其中尺寸参数的影响包括膜厚度,膜面积和通道水力直径。开发并求解了非线性控制方程系统。在每个阶段,都介绍并讨论了出口温度,水和热传递速率,相对湿度以及干燥侧出口的露点。加湿器的评估基于湿侧入口和干侧出口露点之间差异的减少,从而使加湿器具有更好的性能。结果表明,膜厚度的增加导致干燥侧出口的露点降低,这表明加湿器性能较弱。更大的膜面积可以增强加湿器性能。在此,不建议使用较大的液压直径。

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