正在加载图片...
·126· 工程科学学报,第40卷,第1期 [9]Zhao Y H,Zhang K H.Diao Y H.Heat Pipe with Micro-pore on the heat dissipation effect of power battery pack cooled with Tubes Array and Making Method Thereof and Heat Exchanging Sys- phase change materials.Chem Ind Eng Prog,2009,28(1):23 tem:US Patent13/127444.2009-11-3 (张国庆,饶中浩,吴忠杰,等。采用相变材料冷却的动力电 [10]Deng YC,Zhao Y H,Wang W,et al.Experimental investigation 池组的散热性能.化工进展,2009,28(1):23) of performance for the novel flat plate solar collector with micro- [14]Pesaran AA.Battery thermal models for hybrid vehicle simula- channel heat pipe array MHPA-FPC).Appl Therm Eng,2013, tions.J Pouer Sources,2002,110(2):377 54(2):440 [15]Zhang G Q.Wu ZJ,Rao Z H,et al.Experimental invesitigation [11]Wang YY,Diao Y H,Zhao Y H,et al.Cooling property of flat on heat pipe cooling effect for power battery.Chem Ind Eng micro-heat pipe arrays for lithium battery.Chin Power Sources, Pr0g,2009,28(7):1165 2014,38(8):1433 (张国庆,吴忠杰,饶中浩,等.动力电池热管冷却效果实 (王颖盈,刁彦华,赵耀华,等.平板微热管阵列应用于锂电 验.化工进展,2009,28(7):1165) 池组的散热特性.电源技术,2014,38(8):1433) [16]Wu M S,Liu K H,Wang YY,et al.Heat dissipation design for [12]Wang H Y,Deng Y C,Hao L M,et al.Applied investigation on lithium-ion batteries.J Power Sources,2002,109(1):160 LED heat cooling equipment using flat micro-heat pipe arrays [17]Bernardi D.Pawlikowski E,Newman J.A general energy balance Semicond Technol,2012,37(3):240 for battery systems.J Electrochem Soc,1985,132(1):5 (王宏燕,邓月超,郝丽敏,等.平板微热管阵列在ED散 [18]Sato N.Thermal behavior analysis of lithium-ion batteries for 热装置中的应用.半导体技术,2012,37(3):240) electric and hybrid vehicles.Power Sources,2001,99(1-2): [13]Zhang GQ,Rao Z H,Wu Z J,et al.Experimental investigation 70工程科学学报,第 40 卷,第 1 期 [9] Zhao Y H, Zhang K H, Diao Y H. Heat Pipe with Micro鄄pore Tubes Array and Making Method Thereof and Heat Exchanging Sys鄄 tem: US Patent 13 / 127444. 2009鄄鄄11鄄鄄3 [10] Deng Y C, Zhao Y H, Wang W,et al. Experimental investigation of performance for the novel flat plate solar collector with micro鄄 channel heat pipe array (MHPA鄄鄄FPC). Appl Therm Eng, 2013, 54(2): 440 [11] Wang Y Y, Diao Y H, Zhao Y H, et al. Cooling property of flat micro鄄heat pipe arrays for lithium battery. Chin J Power Sources, 2014, 38(8): 1433 (王颖盈, 刁彦华, 赵耀华, 等. 平板微热管阵列应用于锂电 池组的散热特性. 电源技术, 2014, 38(8): 1433) [12] Wang H Y, Deng Y C, Hao L M, et al. Applied investigation on LED heat cooling equipment using flat micro鄄heat pipe arrays. Semicond Technol, 2012, 37(3): 240 (王宏燕, 邓月超, 郝丽敏, 等. 平板微热管阵列在 LED 散 热装置中的应用. 半导体技术, 2012, 37(3): 240) [13] Zhang G Q, Rao Z H, Wu Z J, et al. Experimental investigation on the heat dissipation effect of power battery pack cooled with phase change materials. Chem Ind Eng Prog, 2009, 28(1): 23 (张国庆, 饶中浩, 吴忠杰, 等. 采用相变材料冷却的动力电 池组的散热性能. 化工进展, 2009, 28(1): 23) [14] Pesaran A A. Battery thermal models for hybrid vehicle simula鄄 tions. J Power Sources, 2002, 110(2): 377 [15] Zhang G Q, Wu Z J, Rao Z H, et al. Experimental invesitigation on heat pipe cooling effect for power battery. Chem Ind Eng Prog, 2009, 28(7): 1165 (张国庆, 吴忠杰, 饶中浩, 等. 动力电池热管冷却效果实 验. 化工进展, 2009, 28(7): 1165) [16] Wu M S, Liu K H, Wang Y Y,et al. Heat dissipation design for lithium鄄ion batteries. J Power Sources, 2002, 109(1): 160 [17] Bernardi D, Pawlikowski E, Newman J. A general energy balance for battery systems. J Electrochem Soc, 1985, 132(1): 5 [18] Sato N. Thermal behavior analysis of lithium鄄ion batteries for electric and hybrid vehicles. J Power Sources, 2001, 99(1鄄2): 70 ·126·
<<向上翻页
©2008-现在 cucdc.com 高等教育资讯网 版权所有