[1] GOU Yujun, LIU Zhongliang, ZHONG Xiaohui. Experimental study of heat pipe exchanger for high power LED cooling system[J]. Fluid Machinery, 2011, 39(9): 62-65.
[3] LI Zhi, JIA Li, WEI WenBo. Experimental study on natural convection cooling of LED based on plate pulsating heat pipe[J]. Journal of Engineering Thermophysics, 2013, 34(7): 1361-1364.
[5] LI Yong, LI Pengfang, ZENG Zhixin. Analysis of heat dissipation performance for typical high power LED secondlyheat sinks[J]. Semiconductor Optoelectronics, 2010, 31(5): 723-728.
[6] YAN Yunfei, ZHANG Li, PU Ge, et al. Optimization and heat dissipation analysis of highpower LED lamp package structure[J]. Materials Review, 2012, 26(8): 156-160.
[8] KOU Zhihai, BAI Minli, YANG Hongwu. Experimental investigation on a flat heat pipe radiator for cooling high power LEDs[J]. Journal of Optoelectronics·Laser, 2010, 21(4): 485-488.
[9] LU Xiangyou, CHENG Yuanxia, LIU Meijing, et al. Experimental investigation on heat pipe heat sink for cooling high power LED[J]. Semiconductor Optoelectronics, 2008, 29(5): 651-654.
[10] YUAN Liulin, LIU Sheng, CHEN Mingxiang, et al. Thermal analysis of high power LED array packaging with microchannel cooler[J]. Semiconductor Optoelectronics, 2006, 27(6): 712-716.
[11] WAN Zhongmin, CHEN Min, LIU Wei, et al. Research on porous micro heat sink for thermal management of high power LED[J]. Journal of Mechanical Engineering, 2010, 46(8): 109-113.
[12] LUO Xiaobing, LIU Sheng. A microjet array cooling system for thermal management of highbrightness LEDs[J]. IEEE Transactions on Advanced Packaging, 2007, 30(3): 475-484.
[13] LUO Xiaobing, LIU Sheng, JIANG Xiaoping, et al. Experimental and numerical study on a micro jet cooling solution for high power LEDs[J]. Science in China Series E:Technological Sciences, 2007, 50(4): 478-489.