Personal Information

  • Doctoral Supervisor
  • Master Tutor
  • (教授)
  • E-Mail:

  • Date of Employment:

    1996-07-01
  • Education Level:

    With Certificate of Graduation for Doctorate Study
  • Gender:

    Male
  • Professional Title:

    教授
  • Status:

    Employed
  • Alma Mater:

    西安交通大学
  • Have Any Overseas Experience:

    No
  • Foreign Personnel or Not:

    No
  • Discipline:

    Power Engineering and Engineering Thermophysics

Papers

Home > Research > Papers

Effects of Velocity Ratio on turbulent Mixing Layer at high Reynolds number

  • Date:2025-04-30
  • Title of Paper:Effects of Velocity Ratio on turbulent Mixing Layer at high Reynolds number
  • Journal:Journal of physics: conferences series
  • Summary:In this paper the effect of velocity ratio on plane mixing layer was experimentally investigated by Particle Image Velocimetry (PIV). The velocity ratio between low and high speed side are 0.25 and 0.50, respectively. The Reynolds number based on the velocity difference of two streams and hydraulic diameter of the channel is 66000. The results indicate that the maximum mean Reynolds stress on the same cross section is decreasing with the velocity ratio increasing. The maximum dimensionless mean vorticity is decreasing according to an exponential law along the stream-wise direction and the decreasing speed of dimensionless mean maximum vorticity is increasing with the velocity ratio increasing. The dimensionless vorticity caused by plate wake is decreasing sharply in a very short distance along the down stream wise direction and the decreasing speed is faster when the velocity ratio is larger.
  • Co-author:Fude Guo, Bin Chen, Liejin Guo, Ximin Zhang
  • Volume:147(1)
  • Page Number:012049
  • Translation or Not:No
  • Date of Publication:2009-03-27
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