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质子交换膜燃料电池的三维数值分析 被引量:6

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摘要 发展了一个用于研究包括流道在内的整个质子交换膜燃料电池的三维数学模型。模型同时考虑了流体流动、热量传递、电化学动力学和多组分传递。通过求解传输方程组,并耦合电化学动力学方程,获得了电池内的流动、温度、反应物浓度等分布和电池的极化性能曲线,最后,比较了估算的极化性能与文献中的实验数据,结果表明两者较好地相符合。
出处 《自然科学进展》 北大核心 2003年第4期388-392,共5页
基金 浙江省自然科学基金(批准号:501140)
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参考文献12

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同被引文献50

  • 1邵庆龙,曹广益,朱新坚.质子交换膜燃料电池电堆动态热传输模型[J].上海交通大学学报,2004,38(8):1300-1303. 被引量:8
  • 2BERNARDI D M, VERBRUGGE M W. A mathematical model of the solid-polymer-electrolyte fuel cell[J]. Journal of Electrochemical Society, 1992,139: 2477 - 2491.
  • 3SPRINGER T E, WILSON M S, GOTTESFELD S. Modeling and experimental diagnostics in polymer electrolyte fuel cells[J]. Journal of Electrochemical Society, 1993, 140(12): 513 - 3526.
  • 4ROWE A, LI X. Mathematical modeling of proton exchange membrane fuel cells[J]. Journal of Power Sources, 2001, 102: 82 - 96.
  • 5FULLER T F, NEWMAN J. Water and thermal management in solid-polymer-electrolyte fuel cells[J]. Journal of Electrochemical Society, 1993,140:1218 - 1225.
  • 6NGUYEN T V, WHITE R E. A water and heat management model for proton-exchange-membrane fuel cells[J]. Journal of Electrochemical Society, 1993, 140(8): 2178 - 2186.
  • 7YI J S, NGUYEN T V. An along-the-channel model for proton exchange membrane fuel cells[J]. Journal of Electrochemical Society, 1998, 145(4): 1149 - 1159.
  • 8GURAU V, LIU H, KAKAC S. Two-dimensional model for proton exchange membrane fuel cells[J]. AICHE Journal, 1998, 44: 2410 - 2422.
  • 9DUTTA S, SHIMPALEE S, VAN ZEE J W. Three-dimensional numerical simulation of straight channel PEM fuel cells[J]. Journal of Applicated Electrochemistry, 2000, 30: 135 - 146.
  • 10DUTTA S, SHIMPALEE S, VAN ZEE J W. Numerical prediction of mass-exchange between cathode and anode channels in a PEM fuel cell[J]. International Journal of Heat and Mass Transfer, 2001,44:2029 - 2042.

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