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COMPARATIVE EVALUATION OF HEATING TECHNIQUES FOR ROOM TEMPERATURE STARTUP OF A PEMFC

机译:PEMFC室温启动的加热技术的比较评估

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摘要

We study the use of different external heating techniques for startup of a PEM fuel cell initially at room temperature. If a hot liquid is used to heat the fuel cell, the startup time depends on the Reynolds number of the hot liquid flow and also on the convective heat transfer coefficient at the liquid channel/bipolar plate interface. Therefore, apart from the energy required to heat the liquid, additional power is required for the external hot liquid pump. Fuel cell can also be directly heated by using electric heaters. Thin flexible heaters were found to be most suitable for the purpose as they allow the use of thin bipolar plates and reduce the thermal contact resistance at the heater/bipolar plate interface. The thermal mass of the bipolar plates was found to be an important factor affecting the startup time. Hence using materials with lower heat capacities reduces startup time. Embedding a heating element in the GDL reduces the startup time as the thermal mass of the GDLs and MEA is much smaller than the bipolar plate. GDLs with low through-plane thermal conductivities and high in-plane thermal conductivities are able to further reduce the startup time when used in conjunction with a heating element in the GDL.
机译:我们研究了使用不同的外部加热技术来开始在室温下启动PEM燃料电池。如果使用热液体来加热燃料电池,则启动时间取决于热液体流的雷诺数,还取决于液体通道/双极板界面处的对流传热系数。因此,除了加热液体所需的能量之外,外部热液体泵还需要额外的功率。燃料电池也可以通过使用电加热器直接加热。发现薄的柔性加热器最适合于该目的,因为它们允许使用薄的双极板并减小加热器/双极板界面处的热接触电阻。发现双极板的热质量是影响启动时间的重要因素。因此,使用具有较低热容量的材料可减少启动时间。在GDL中嵌入加热元件可缩短启动时间,因为GDL和MEA的热质量比双极板小得多。当与GDL中的加热元件结合使用时,具有低的通孔平面导热系数和高的面内导热系数的GDL能够进一步减少启动时间。

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