Transient Response Analysis of Polymer Electrolyte Fuel Cell Considering Equivalent Electric Circuit and Mass Conservation
Author:
Affiliation:
1. Electric and Electronic Eng., Toyohashi University of Technology
2. Dept. Mechanical Eng. Sci., Kyushu University
Publisher
Institute of Electrical Engineers of Japan (IEE Japan)
Subject
Electrical and Electronic Engineering,Energy Engineering and Power Technology
Link
https://www.jstage.jst.go.jp/article/ieejpes/124/3/124_3_485/_pdf
Reference22 articles.
1. (1) S. Koike: “PEFC System for Residential Use”, 2002 National Convention Record IEE Japan, Part VII, pp. 283-285 (2002) (in Japanese)
2. (2) S. Kawazu: “Polymer Electrolyte Fuel Cell for Vehicle Application”, 2002 National Convention Record IEE Japan, Part VII, pp. 279-282 (2002) (in Japanese)
3. (3) D. J. Hall and R. G. Colclaser: “Transient Modeling and Simulation of a Tubular Solid Oxide Fuel Cell”, IEEE Trans. Energy Conversion, Vol. 14, pp. 749-753 (1999)
4. (4) E. Achenbach: “Response of a Solid Oxide Fuel Cell to Load Change”, J. Power Sources, Vol. 57, pp. 105-109 (1995)
5. (5) Y. Tutsumi, M. Yamaguchi, and Y. Nanba: “Load Following Characteristics of Phosphoric Acid Fuel Cell”, T. IEE Japan, Vol. 112-B, No. 12,pp. 1146-1154 (1992-12) (in Japanese)
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1. Evaluation of Electrical Load Following Capability of Fuel Cell System Fueled by High-Purity Hydrogen;Electrical Engineering in Japan;2013-12-12
2. Investigation of Equivalent Circuit for PEMFC Assessment;Transactions of the Korean Society of Mechanical Engineers B;2011-09-01
3. Evaluation of Electric Load Following Capability on Fuel Cell System Fueled by High-Purity Hydrogen;IEEJ Transactions on Power and Energy;2011
4. Analysis of polymer electrolyte fuel cell performance by electrode polarization model;Journal of Power Sources;2009-08
5. Mass Transfer Characteristics Inside PEMFC and its Unsteady Power Generation Analysis;IEEJ Transactions on Power and Energy;2008
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