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李献国
2023-05-13 10:51
  • 李献国
  • 李献国 - 教授 博导-天津大学-内燃机燃烧学国家重点实验室-个人资料

近期热点

资料介绍

个人简历


主要学历: 1978,09—1982,07, 天津大学,内燃机专业,本科生,获工学学士学位 1982,08—1984,08, 天津大学出国研究生 1984,09—l986,12, 美国西北大学,动力工程与机械专业,硕士研究生,获工学硕士学位 1987,01—1989,06,美国西北大学,动力工程与机械专业,博士研究生,获工学博士学位 主要学术经历: 1989,07—1991,07,加拿大滑铁卢大学博士后 1991,08—1991,12,加拿大滑铁卢大学助理研究教授 1992,01—1994,06,加拿大维多利亚大学助理教授 1994,07—1997,08,加拿大维多利亚大学副教授并任终身教授 1997,09—2000,06, 加拿大滑铁卢大学副教授并任终身教授 2000年 - 至今 加拿大滑铁卢大学正教授 2007年 被聘为天津大学“长江学者”讲座教授 2008年 被评为加拿大工程研究院院士(Fellow of EIC)

研究领域


燃料电池技术 绿色能量体系 内燃机技术 传热传质学

近期论文


1.Y. Qin, Q. Du, Y. Yin, K. Jiao, X. Li, Numerical Investigation of Water Transport and Dynamics in a Novel PEM Fuel Cell Flow Channel, Journal of Power Sources, 2013, 222, 150-160. 2.K. Jiao, X. Li, Y. Yin, Y. Zhou, S. Yu, Q. Du, Effects of various operating conditions on the hydrogen absorption processes in a metal hydride tank, Applied Energy, 94 (2012) 257-269. 3.K. Jiao,X. Li. Water transport in polymer electrolyte membrane fuel cells. Progress in Energy and Combustion Science. 2011,3: 221-291. 4.N. Zamel,X. Li. Effect of contaminants on polymer electrolyte membrane fuel cells, Progress in Energy and Combustion Science. 2011,37: 292-329. 5.Wang, Y., S.A. Shakhshir and X. Li, Development and impact of sandwich wettability structure for gas distribution media on PEM fuel cell performance. Applied Energy, Vol. 88, pp. 2168-2175, 2011. 6.Lee, Y., B. Kim, Y. Kim, and X. Li, Effects of a microporous layer on the performance degradation of proton exchange membrane fuel cells through repetitive freezing. Journal of Power Sources. Vol. 196, pp. 1940-1947, 2011. 7.Jiao, K., I.E. Alaefour and X. Li, Three-dimensional non-isothermal modeling of carbon monoxide poisoning in high temperature proton exchange membrane fuel cells with phosphoric acid doped polybenzimidazole membranes. Fuel, Vol. 90, pp. 568-582, 2011. 8.K. Jiao,X. Li,A three-dimensional non-isothermal model of high temperature proton exchange membrane fuel cells with phosphoric acid doped polybenzimidazole membranes. Fuel Cells,2010,10: 351-362. 9.Das, P., X. Li and Z.S. Liu, Effective transport coefficients in PEM fuel cell catalyst and gas diffusion layers: beyond Bruggeman approximation. Applied Energy, Vol 87, pp. 2785-2796, 2010. 10.H. Wu, P. Berg and X. Li, Steady and unsteady 3D non-isothermal modeling of PEM fuel cells with the effect of non-equilibrium phase transfer. Applied Energy, Vol. 87, pp. 2778-2784, 2010. 11.Zamel, N. and X. Li, Non-isothermal multi-phase simulation of PEM fuel cell cathode. International Journal of Energy Research, Vol. 34, pp. 568-584, 2010. 12.Das, P., X. Li and Z.-S. Liu, Analysis of liquid water transport in cathode catalyst layer of PEM fuel cells. International Journal of Hydrogen Energy, Vol. 35, pp. 2403-2416, 2010. 13.J. Kui,X. Li. Cold start analysis of polymer electrolyte membrane fuel cells. International Journal of Hydrogen Energy. 2010,35: 5077-5094. 14.J. Baschuk,X. Li. Modeling of ion and water transport in the polymer electrolyte membrane of PEM fuel cells. International Journal of Hydrogen Energy. 2010,35: 5095-5103. 15.G. Karimi,X. Li,P. Teertstra. Measurement of through-plane effective thermal conductivity and contact resistance in PEM fuel cell diffusion media. Electrochimica Acta,2010,55:1619-1625.

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