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Effect of stacking pressure on the performance of polymer electrolyte membrane fuel cell with various channel types

机译:堆叠压力对各种通道类型聚合物电解质膜燃料电池性能的影响

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摘要

Polymer electrolyte membrane fuel cell (PEMFC) stacks are assembled via the sequential stacking of a number of PEMFC unit cells. In such a process, stacking pressure is applied to the PEMFC stack. This compression pressure causes a change in mass transport and electrical conduction characteristics. In this paper, various stacking pressures were applied to three types of PEMFC unit cells with serpentine, parallel, and interdigitated cathode channels to understand the effect of stacking pressure on PEMFC performance. Numerical analyses were conducted with a validated 3-D PEMFC model. Deformation of the gas diffusion layer (GDL) by compression was not influenced by the channel type. However, the results of the electrochemical simulation showed different influence of stacking pressure depending on the operating voltage and cathode channel type. To improve PEMFC performance, it was concluded that the stacking pressure should be determined by considering the channel type and operating voltage.
机译:聚合物电解质膜燃料电池(PEMFC)堆叠通过许多PEMFC单元电池的顺序堆叠组装。在这种过程中,将堆叠压力施加到PEMFC堆栈。这种压缩压力导致质量传输和电导却特性的变化。在本文中,将各种堆叠压力应用于三种类型的PEMFC单元细胞,其具有蛇形,平行和交叉的阴极通道,以了解堆叠压力对PEMFC性能的影响。用经过验证的3-D PEMFC模型进行数值分析。通过压缩变形气体扩散层(GDL)的变形不受通道型的影响。然而,电化学模拟的结果根据工作电压和阴极通道型而显示堆叠压力的不同影响。为了提高PEMFC性能,得出结论是,应通过考虑通道类型和工作电压来确定堆叠压力。

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