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Dynamics of low-speed streak evolution and interaction in laminar boundary layer

         

摘要

The present paper presents an experimental effort on the regeneration process of two low-speed laminar streaks in a zero-pressure-gradient laminar boundary layer.Two vertical thin wires separated by a spanwise distance of 30 mm are used to introduce disturbances of two rolls of transitional Ka′rma′n vortex street to the downstream boundary layer. Both hydrogen bubble visualization and particle image velocimetry(PIV) measurement show that two lowspeed streaks are induced through leading-edge receptivity process. As these streaks develop in the downstream, two additional low-speed streaks begin to appear outboard of the flank of the original two, together with complex dynamics of streak splitting and merging. A flow pattern of four streaks aligned along the spanwise direction occurs finally in the far downstream. It is found that besides the mechanisms of streak breakdown, the streak interaction is also an important factor characterizing the instability of low speed streaks and their regeneration process.

著录项

  • 来源
    《力学学报:英文版》 |2014年第005期|636-645|共10页
  • 作者单位

    Fluid Mechanics Key Laboratory of Ministry of Education,Beihang University, 100191 Beijing, China;

    Fluid Mechanics Key Laboratory of Ministry of Education,Beihang University, 100191 Beijing, China;

    Fluid Mechanics Key Laboratory of Ministry of Education,Beihang University, 100191 Beijing, China;

  • 原文格式 PDF
  • 正文语种 eng
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