1 |
Thermal characteristics of anair-cooled open-cathodeproton exchange membrane fuel cell stack via numerical investigation D'Souza C, Apicella M, El-kharouf A, Stamatakis E, Khzouz M, Stubos A, Gkanas EI International Journal of Energy Research, 44(14), 11597, 2020 |
2 |
An improved thermal control of open cathode proton exchange membrane fuel cell Mahjoubi C, Olivier JC, Skander-Mustapha S, Machmoum M, Slama-Belkhodja I International Journal of Hydrogen Energy, 44(22), 11332, 2019 |
3 |
Experimental study on temperature characteristics of an air-cooled proton exchange membrane fuel cell stack Luo LZ, Jian QF, Huang B, Huang ZP, Zhao J, Cao SY Renewable Energy, 143, 1067, 2019 |
4 |
Experimental validation of the polarization curve and the temperature distribution in a PEMFC stack using a one dimensional analytical model Salva JA, Iranzo A, Rosa F, Tapia E International Journal of Hydrogen Energy, 41(45), 20615, 2016 |
5 |
Sensor-less control of the methanol concentration of direct methanol fuel cells at varying ambient temperatures An MG, Mehmood A, Ha HY Applied Energy, 129, 104, 2014 |
6 |
A sensor-less methanol concentration control system based on feedback from the stack temperature An MG, Mehmood A, Ha HY Applied Energy, 131, 257, 2014 |
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A new model for the analysis of operating conditions of micro-cogenerative SOFC units Arpino F, Dell'Isola M, Maugeri D, Massarotti N, Mauro A International Journal of Hydrogen Energy, 38(1), 336, 2013 |
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Investigation of the effect of shunt current on battery efficiency and stack temperature in vanadium redox flow battery Tang A, McCann J, Bao J, Skyllas-Kazacos M Journal of Power Sources, 242, 349, 2013 |
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Effects of humidity and temperature on a proton exchange membrane fuel cell (PEMFC) stack Kim S, Hong I Journal of Industrial and Engineering Chemistry, 14(3), 357, 2008 |
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Dynamic modeling and analysis of a 20-cell PEM fuel cell stack considering temperature and two-phase effects Park SK, Choe SY Journal of Power Sources, 179(2), 660, 2008 |