4.7 Article

Stability analysis of experimental flow fields behind a porous cylinder for the investigation of the large-scale wake vortices

期刊

JOURNAL OF FLUID MECHANICS
卷 715, 期 -, 页码 499-536

出版社

CAMBRIDGE UNIV PRESS
DOI: 10.1017/jfm.2012.532

关键词

instability; vortex shedding; wakes/jets

资金

  1. Goran Gustafsson Foundation
  2. Swedish Research Council
  3. 'C. M. Lerici' Foundation

向作者/读者索取更多资源

When the linear stability analysis is applied to the time-averaged flow past a circular cylinder after the primary instability of the wake, a nearly marginally stable global mode is predicted with a frequency in time equal to that of the saturated vortex shedding. This behaviour has recently been shown to hold up to Reynolds number Re = 600 by direct numerical simulations. In the present work we verify that the global stability analysis provides reasonable estimation also when applied to experimental velocity fields measured in the wake past a porous circular cylinder at Re similar or equal to 3.5 x 10(3). Different intensities of continuous suction and blowing through the entire surface of the cylinder are considered. The global direct and adjoint stability modes, derived from the experimental data, are used to sort the random instantaneous snapshots of the velocity field in phase. The proposed method is remarkable, sorting the snapshots in phase with respect to the vortex shedding, allowing phase-averaged velocity fields to be extracted from the experimental database. The phase-averaged flow fields are analysed in order to study the effect of the transpiration on the kinematical characteristics of the large-scale wake vortices.

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