期刊文献+

微小通道内气体突扩阻力特性的实验研究

EXPERIMENTAL INVESTIGATION OF GAS LOCAL RESISTANCE ACROSS SUDDEN EXPANSION IN MINI-CHANNELS
在线阅读 下载PDF
导出
摘要 采用缝隙测压方法,测量了内径从0.245 mm到0.850 mm的三种不同面积比的微通道内氮气和氦气突扩时的局部阻力损失。结果表明,两种气体的局部阻力系数不同。在层流阶段,微通道内的两种气体突扩阻力系数都要高于常规管的值,氦气的突扩阻力系数还高于氮气的阻力系数。而在湍流阶段,由于气体的可压缩性,突扩阻力系数随雷诺数的增大而增大。而且通道面积比越小,突扩阻力系数增加的幅度越大。 Local resistances of nitrogen and helium across sudden expansion in small channels with diameters from 0.245 mm to 0.850 mm were experimentally investigated by using a pressure measurement method of the tiny gaps on the channels. The results showed that the local resistance coefficient was different for two kinds of gases. In laminar flow, the expansion coefficient for nitrogen and helium in mierochannels is higher than that in conventional tubes, expansion coefficient of helium is higher than the nitrogen. In turbulent flow, the expansion resistance coefficient increases while Reynolds number increasing due to gas compressibility. In addition, the amplification of expansion coefficient is increasing with area ratio decrease.
出处 《工程热物理学报》 EI CAS CSCD 北大核心 2009年第4期641-644,共4页 Journal of Engineering Thermophysics
基金 国家自然科学基金(No.50676001No.50406010) 北京市优秀人才培养资助项目(No.20081D0501500167)
关键词 微通道 突扩 局部阻力系数 mini-channels sudden expansion local resistance coefficient
  • 相关文献

参考文献5

  • 1~rner S E, Sun H W, Faghri M et al. Local Pressure Measurement of Gaseous Flow Through Microchannels. American Society of Mechanical Engineers. Heat Transfer Division, 1999, 364(3): 71-79.
  • 2Abdelall F F, Hahn G, Ghiaasiaan S M, et al. Pressure Drop Caused by Abrupt Flow Area Changes in Small Channels. Experimental Thermal and Fluid Science, 2005, 29(4): 425-434.
  • 3李卓,俞坚,马重芳.小通道单相流体突扩和突缩局部阻力特性[J].化工学报,2007,58(5):1127-1131. 被引量:16
  • 4华少曾,杨学宁,编译.实用流体阻力手册.第2版.北京:国防工业出版社,1985.154-162.
  • 5Guo Z Y, Wu X B. Compressibility Effect on the Gas Flow and Heat Transfer in a Microtube. International Journal of Heat and Mass Transfer, 1997, 40(3): 3251 -3254.

二级参考文献10

  • 1Choi S B,Barron R F,Warrington R O.Fluid flow and heat transfer in microtubes.Micromechanical Sensor,Actuators,and System,1991,32:123-134
  • 2Harley J C,Huang Y,Bau H,Zemal J N.Gas flow in micro-channels.Journal of Fluid Mechanics,1995,284:257-274
  • 3Peng X F,Peterson G P,Wang B X.Frictional flow characteristics of water flowing through rectangular microchannels.Experimental Heat Transfer,1994,7:249-264
  • 4Pfahler J,Harley J,Bau H,Zemel J N.Gas and liquid flow in small channels.Micromechanical Sensors,Actuators,and Systems,1991,33:49-60
  • 5Li Z X,Du D X,Guo Z Y.Experimental study on flow characteristics of liquid in circular microtubes//Proc,of the Int.Conference on Heat Transfer and Transvort Phenomena in Microscale.Banff,Canada,2000:162-167
  • 6Idel'cik I E.Handbook of Hydraulic Resistance.2nd ed.New York:Hemisphere Publishing Corporation,1986:154-162
  • 7Turner S E,Sun H W,Faghri M,Gregory O J.Local pressure measurement of gaseous flow through microchannels.Proceedings of the ASME Heat Transfer Division,1999,364 (3):71-79
  • 8Abdelall F F,Hahn G,Ghiaasiaan S M,Abdel-Khalik S I,Jeter S S,Yoda M,Sadowski D L.Pressure drop caused by abrupt flow area changes in small channels.Experimental Thermal and Fluid Science,2005,29:425-434
  • 9Kays W M.Loss coefficient for abrupt changes in flow cross section with low Reynolds number flow in single and multiple tube systems.Trans.ASME,1950,72:1067-1074
  • 10Geiger S E.Sudden contraction losses in single and twophase flow[D].Pittsburgh:University of Pittsburgh,1964:108

共引文献15

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