Experiments in Shock-Vortex Interactions

Author:

Skews BericORCID

Abstract

Studies of shock-vortex interactions in the past have predominantly been numerical, with a number of idealizations such as assuming an isolated vortex and a plane shock wave. In the present case the vortex is generated from flow separation at a corner. A shear layer results which wraps up into a spiral vortex. The flow is impulsively initiated by the diffraction of a shock wave over the edge. The strength of the shock determines the nature of the flow at the corner and that induced behind the diffracted wave. A wide variety of cases are considered using different experimental arrangements such as having two independent shock waves arriving at the corner at different times, to reflecting the diffracting wave off different surfaces back into the vortex, and to examining the flow around bends where the reflection off the far wall reflects back onto the vortex. The majority of studies have shown that the vortex normally retains its integrity after shock transit. Some studies with curved shock waves and numerous traverses have shown evidence of vortex breakup and the development of turbulent patches in the flow, as well as significant vortex stretching. Depending on the direction of approach of the shock wave it refracts through the shear layer thereby changing the strength and direction of both. Of particular note is that the two diffracted waves which emerge from the vortex as the incident wave passes through interact with each other resulting in a pressure spike of considerable magnitude. An additional spike is also identified.

Funder

South African National Reseach Foundation

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Mechanical Engineering,Condensed Matter Physics

Reference23 articles.

1. A Schlieren Study of the Interaction between a Vortex and a Shock Wave in a Shock Tube;Hollingsworth,1955

2. The Sound Generated by Interaction of a Single Vortex with a Shock Wave;Ribner,1959

3. Cylindrical sound wave generated by shock-vortex interaction

4. Interaction of a starting vortex as well as a vortex street with a traveling shock wave

5. The interaction of a shock with a vortex: Shock distortion and the production of acoustic waves

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