首页> 外文期刊>Proceedings of the ASME Advanced Energy Systems Division >EFFECTS OF ELECTRICAL RESISTANCE OF THE GAS DIFFUSION LAYER OF A PEM FUEL CELL
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EFFECTS OF ELECTRICAL RESISTANCE OF THE GAS DIFFUSION LAYER OF A PEM FUEL CELL

机译:PEM燃料电池气体扩散层的电阻效应

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A three-dimensional computational model of polymer electrolyte fuel cell (PEMFC) was employed to investigate the effects of electron transport through the gas diffusion layer (GDL) and catalyst layer. The electron transport equation was added to our previously established 3D model. Using reasonable electrical conductivities for the GDL and catalyst layer, especially the different values for the in-plane and through-plane conductivities for the GDL, it was found that the effect of the electronic resistance of GDL is not as significant as previous researches suggested. The previously over-estimated effect was mainly caused by assuming the GDL's inplane conductivity to be the same as through-plane conductivity, which can have an order of magnitude difference. Comparing the magnitude of ohmic loss from the electron current to that of the proton current, it can also be concluded that the ohmic heating from the electron current is negligible.
机译:聚合物电解质燃料电池(PEMFC)的三维计算模型用于研究电子通过气体扩散层(GDL)和催化剂层传输的影响。电子传输方程式已添加到我们先前建立的3D模型中。使用合理的GDL和催化剂层电导率,尤其是GDL的面内和贯通面电导率的不同值,发现GDL的电子电阻的影响并不像以前的研究那么重要。先前过高估计的影响主要是由于假设GDL的面内电导率与直通面电导率相同,后者可能具有一个数量级的差异。将来自电子电流的欧姆损耗的大小与质子电流的欧姆损耗的大小进行比较,也可以得出结论,来自电子电流的欧姆加热是可以忽略的。

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