4.7 Article

Two-dimensional compressible viscous flow around a circular cylinder

期刊

JOURNAL OF FLUID MECHANICS
卷 785, 期 -, 页码 349-371

出版社

CAMBRIDGE UNIV PRESS
DOI: 10.1017/jfm.2015.635

关键词

compressible flows; instability; wakes

资金

  1. National Science Foundation (NSF-REU Program) [1062936]
  2. US Army Research Office [W911NF-13-1-0146]
  3. Div Of Engineering Education and Centers
  4. Directorate For Engineering [1062936] Funding Source: National Science Foundation

向作者/读者索取更多资源

Direct numerical simulation is performed to study compressible viscous flow around a circular cylinder. The present study considers two-dimensional shock-free continuum flow by varying the Reynolds number between 20 and 100 and the free-stream Mach number between 0 and 0.5. The results indicate that compressibility effects elongate the near wake for cases above and below the critical Reynolds number for two-dimensional flow under shedding. The wake elongation becomes more pronounced as the Reynolds number approaches this critical value. Moreover, we determine the growth rate and frequency of linear instability for cases above the critical Reynolds number. From the analysis, it is observed that the frequency of the Benard-von Karman vortex street in the time-periodic fully saturated flow increases from the dominant unstable frequency found from the linear stability analysis as the Reynolds number increases from its critical value, even for the low range of Reynolds numbers considered. We also find that the compressibility effects reduce the growth rate and dominant frequency in the linear growth stage. Semi-empirical functional relationships for the growth rate and the dominant frequency in linearized flow around the cylinder in terms of the Reynolds number and free-stream Mach number are presented.

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