Abstract
The interaction between the wake of a transverse circular cylinder and the underlying flat-plate boundary layer with a moderate gap ratio G/. D=1.0 is investigated using both hydrogen-bubble-based and PIV-based visualization techniques. The spanwise rollers in the cylinder wake are found to be capable of inducing secondary vortices in the near-wall region. The mutual induction from the counter-clockwise rollers, which are closer to the wall, plays a primary role, so that these secondary vortices present linear lift-up motion at first. Their subsequent evolution dominantly determines the characteristics of the wake/boundary-layer interaction. Two different vortex interaction scenarios are observed: the secondary vortices can be either entrained into the rollers or pushed down towards the wall. This leads to a rapid three-dimensional destabilization process, through which streamwise vortices are generated. And it is suggested that these streamwise vortices are the dominant structures to promote the following boundary layer transition.
| Original language | English |
|---|---|
| Pages (from-to) | 100-109 |
| Number of pages | 10 |
| Journal | Journal of Fluids and Structures |
| Volume | 43 |
| DOIs | |
| State | Published - Nov 2013 |
Keywords
- Hydrogen bubble flow visualization
- PIV measurement
- Secondary vortex
- Wake/boundary layer interaction
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