期刊文献+

无重力条件下毛细相变回路中界面的稳定性研究

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摘要 通过建立毛细管内相变液柱的Lucas-Washburn方程,获得了相变毛细管中流体上升高度与毛细管半径以及热流密度的关系式,同时利用小扰动理论通过对界面高度衰减的变化来分析研究相变界面的稳定性.导出的影响界面稳定性因素和提高系统稳定性的方法,对毛细泵流体回路(CPL)、回路热管(LHP)中毛细界面的稳定性研究提供了一定的理论依据.
出处 《科学通报》 EI CAS CSCD 北大核心 2010年第22期2252-2256,共5页 Chinese Science Bulletin
基金 国家自然科学基金(50876035 50906026) 中国博士后基金(20100471166)资助项目
  • 相关文献

参考文献11

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二级参考文献12

  • 1童均耕,吴孟余,王平阳.高等工程热力学.北京:科学出版社,2006.
  • 2Bazzo E, Riehl RR. Operation characteristics of a small-scale capillary pumped loop. Applied Thermal Engineering, 2003, 23(6): 687-705.
  • 3Zhang JT, Wang BX. Effect of capillarity at liquid-vapor interface on phase change without surfaetant. International Journal of Heat Mass Transfer, 2002, 44(13): 2689--2694.
  • 4Vershinin SV, Maydanik YF. Investigation of pulsations of the operating temperature in a miniature loop heat pipe. International Journal of Heat and Mass Transfer, 2007, 50(25--26): 5232-- 5240.
  • 5Singh R, Akbarzadeh A, Mochizuki M. Operational characteristics of a miniature loop heat pipe with flat evaporator. International Journal of Thermal Sciences, 2008, 47(11): 1504--1515.
  • 6Chen YM, Groll M, Mertz R, et al. Steady-state and transient performance of a miniature loop heat pipe. International Journal of Thermal Sciences, 2006, 45(11) : 1084--1090.
  • 7Lucas R. Ueber das zeitgesetz des kapillaren aufstiegs von flussigkeiten. Kolloid-Z, 1918, 23:15-22.
  • 8Washburn EW. The dynamics of capillary flow. Physical Review, 1921, 17(3): 273--283.
  • 9Hickman K, Torpid phenomena and pump oils. Journal of Vacuum Science and Technology, 1972, 9(2) : 960-978.
  • 10Ramon G, Oronb A. Capillary rise of a meniscus with phase change. Journal of Colloid and Interface Science, 2008, 327:145-151.

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