期刊文献+

IGBT热管式整体翅片散热器优化分析 被引量:16

Optimization and Analysis of IGBT Heat Pipe Heat Sink with Integral Fin
下载PDF
导出
摘要 本文建立了IGBT热管散热器模型,并用实验数据验证所建立的三维热管散热器模型及基于有限体积法的数值模拟结果的可靠性,然后研究翅片厚度t和翅片间距s对散热器散热性能的影响。结果表明:数值模型可靠;当t由0.5 mm增至1 mm时整体翅片热管散热器的摩擦系数f增加45%,而传热因子j最大增加30%;当s由1.2 mm增至2 mm时散热器的摩擦系数f减小15%,而j的变化较小且s=1.2 mm时j的平均值最大。 The model of IGBT heat pipe heat sink was established. The established three-dimensional model and the reliability of nu-merical simulation results based on the finite volume method were verified by experimental data. Then the effects of fin thickness ( t) and fin spacing ( s) was investigated on the radiator cooling performance. The results show that the numerical model is reliable. When t is in-creased from 0. 5 mm to 1 mm, the friction coefficient ( f) of integral fin tube radiator is increased by 45%, and j factor is greatly in-creased by 30%. When s is increased from 1. 2 mm to 2 mm, the friction coefficient (f) of radiator is decrease by 15%, but the change of j is small and its average reaches the maximum when s=1. 2 mm.
出处 《制冷学报》 CAS CSCD 北大核心 2014年第5期101-104,109,共5页 Journal of Refrigeration
关键词 热管 散热器 整体翅片 数值模拟 heat pipe heat sink integral fin numerical simulation
  • 相关文献

参考文献11

二级参考文献31

  • 1T.汉达,S.爱伊达,J.乌兹诺米亚.高速高密度多芯片模块的热设计[J].计算机工程与科学,1994,16(2):82-86. 被引量:5
  • 2李春阳,徐景秋.热管散热器在新型变流装置中的应用[J].机车电传动,2005(2):14-18. 被引量:8
  • 3John Mookken.未来汽车——开发下一代功率模块的动力[J].电力电子,2005,3(6):14-16. 被引量:1
  • 4何伯森.国际工程招标与投标[M].北京:水利电力出版社,1995..
  • 5宗朝晖.现代电力电子的冷却技术[J].变流技术与电力牵引,2007(4):6-12. 被引量:19
  • 6奥齐西克MN.热传导[M].北京:高等教育出版社,1983.596-598.
  • 7Manferd Groll Marcus Schneider Valerie Sartre. Thermal control of electronic equipment by heat pipes[J]. Rev Gen Therm, 1998,37:323-352.
  • 8Geoffrey Thyrum, Alan N. Herda. Critical aspects of modeling heat pipe assisted heat sinks[ EB/OL] www. thermacore. com/pdfs/critical.pdf. 2003-12-10.
  • 9Wei J, Cha A, Copeland D. Measurement of Vapor Chamber Performance[C]. IEEE SEMI-THERM Symposium, 2003, 191-194.
  • 10M Mochizuki, Th Nguyen, K Mashiko, Y Saito, et al. Practical Application of Heat Pipe and Vapor Chamber for Cooling High Performance Personal Computer[C]. Proceedings of the 13th International Heat Pipe Conference, 2004, 448-454.

共引文献79

同被引文献156

引证文献16

二级引证文献54

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部