期刊文献+

Effects of Surface Roughness of Capillary Wall on the Profile of Thin Liquid Film and Evaporation Heat Transfer 被引量:1

Effects of Surface Roughness of Capillary Wall on the Profile of Thin Liquid Film and Evaporation Heat Transfer
原文传递
导出
摘要 The surface of capillary wall can be treated to have a periodic microrelief mathematically. The roughness is micro enough compared with the thickness of the liquid film. So, the surface roughness only exerts influence on the adsorptive potential. Macroscopically, the flow field of the liquid film can be considered as that when the rough surface has an equivalent smooth surface, whose position is at the crests of the microrelief. The mechanism of heat transfer is in connection with two resistances: the thermal resistance of the liquid film conduction and the thermal resistance of the interfacial evaporation. The capillary pressure between the two sides of the vapor-liquid interface due to the interfacial curvature and the disjoining pressure owing to the thin liquid film are considered simultaneously. Several micro tubes with different micro rough surfaces are studied. The length of the evaporating interfacial region decreases with the increase of roughness angle and/or the increase of the roughness height. The heat transfer coefficient and the temperature of the vapor-liquid interface will change to fit the constant mass flow rate.
作者 QuWei MaTongze
出处 《Journal of Thermal Science》 SCIE EI CAS CSCD 2001年第3期240-246,共7页 热科学学报(英文版)
基金 NationalNW Sdence Foundation of China with the fort No.59995550-4 and the POst-doctoral FOundation. Thesupports are gIatef
关键词 periodic microrelief roughness angle roughness height. 热传导 毛细管热交换机制 微型蒸发器 设计
  • 相关文献

参考文献10

  • 1J G Dash.Films on Solid Surfaces-The Physics and Chemistry of Physical Adsorption[]..1975
  • 2J M Ha,G P Peterson.The Interline Heat Transfer of Evaporating Thin Films Along a Micro Grooved Surface[].Journal of Heat Transfer.1996
  • 3JJ Bikerman.Physical Surfaces[]..1970
  • 4Herdt Swanson.Model of the Evaporating Meniscus in a Capillary Tube[].Journal of Heat Transfer.1992
  • 5S Das Gupta.J A Schonberg, P C Wayner, Jr.Investigation of an Evaporating Extended MeniscusBased on the Augmented Young-Laplace Equation[].J ofHeat Transfer.1993
  • 6D Khrustalev,A Fahgri.Heat Transfer during Evaporation on Capillary-Grooved Structures of Heat Pipes[].Journal of Heat Transfer.1995
  • 7D Khrustalev,A Fahgri.Heat Transfer during Evaporation on Capillary-grooved Structures of Heat Pipes[].Journal of Heat Transfer.1995
  • 8D Khrustalev,A Fahgri.Fluid Flow Effects in Evaporation From Liquid-Vapor Meniscus[].Journal of Heat Transfer.1996
  • 9K P Hallinan,H C Chebaro,et al.Evaporation from an Extended Meniscus for Nonisothermal Interfacial Conditions[].J of Thermophysics and Heat Transfer.1994
  • 10J R Philip.Adsorption and Capillary Condensation on Rough Surfaces[].Journal of Physics.1978

同被引文献11

引证文献1

二级引证文献3

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