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Experimental studies on optimal operating conditions for different flow field designs of PEM fuel cells

  • Wei Mon Yan
  • , Ching Hung Yang
  • , Chyi Yeou Soong
  • , Falin Chen
  • , Sheng Chin Mei

研究成果: 期刊貢獻文章同行評審

85 引文 斯高帕斯(Scopus)

摘要

In this work, the main focus is to measure the optimal cathode fuel flow rate effects with different flow field designs. In addition, the effects of different flow field designs (flow channel number, flow channel length, corner numbers and baffle effects) on the cell performance of the PEM fuel cells under the different operating conditions are examined. The experimental results reveal that the temperature effects generate the same trend in the five cathode flow field designs. When the cell temperature increases from 50 to 70 °C, the proton exchange membrane (PEM) experiences an insufficient hydration which causes an increase in ionic transport resistance. Therefore, the cell performance decreases with an increase in the cell temperature. In addition, increasing the cathode humidification improves the cell performance through enhancing the hydration level of the membrane and hence its ionic conductivity. For the effects of the cathode fuel flow rate on the cell performance, the PEM fuel cell with interdigitated flow field shows a better cell performance than that with the conventional flow field due to the baffle effect which forces the reactant gas through the gas diffuser layer. Furthermore, compared with conventional flow field, the PEM fuel cell with an interdigitated flow field can reach the same cell performance with a lower fuel consumption rate. Under the optimal fuel flow rate conditions, the PEM fuel cell with a parallel flow field with baffle provides the best cell performance among the five flow field designs.

原文English
頁(從 - 到)284-292
頁數9
期刊Journal of Power Sources
160
發行號1
DOIs
出版狀態Published - 29 9月 2006

文獻附註

Funding Information:
The study was supported by the National Science Council, the Republic of China, through the grants NSC 93-2212-E-211-011, NSC 92-2623-7-002-006-ET, 92-2212-E-035-027 and NSC 92-2212-E-002-096.

UN SDG

此研究成果有助於以下永續發展目標

  1. Affordable and clean energy
    Affordable and clean energy

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