Numerical Simulation of Local Entropy Generation of Oxygen Transport in Cathode Diffusion Media of PEFC

Kosuke Nishida
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Abstract

The oxygen transport in cathode electrodes of polymer electrolyte fuel cells (PEFCs) is a key process for determining their power generation performance. To identify the factors affecting its transport loss, this study introduced the analysis of local entropy generation into the conventional two-phase flow simulation in the cathode gas diffusion layer (GDL) of a PEFC and estimated the distribution of the entropy production rate due to oxygen diffusion. The effect of land-channel geometry on its entropy generation in the GDL was also evaluated. The results revealed that the entropy generation of oxygen diffusion becomes remarkably high under the boundary between the channel and land that causes its large concentration gradient. It was also found that the entropy generation due to oxygen diffusion in the GDL increases with an increase in the water accumulation during the operation.
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PEFC阴极扩散介质中氧输运局部熵生成的数值模拟
聚合物电解质燃料电池(PEFCs)的阴极氧输运是决定其发电性能的关键过程。为了识别影响输运损失的因素,本研究将局部熵生成分析引入PEFC阴极气体扩散层(GDL)的常规两相流模拟中,估计了氧扩散引起的熵产率分布。本文还评价了陆道几何形状对GDL中熵产的影响。结果表明,在河道与陆地交界处,氧扩散的熵产非常大,导致其浓度梯度较大。在运行过程中,氧扩散在GDL中的熵产随着蓄水量的增加而增加。
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