PIV Study of the Vortex Wake behind a Translationally Oscillating Cylinder in a Quiescent Fluid
Mehdi Nazarinia, John Sheridan, Mark C. Thompson, Josie Carberry
Abstract
Mehdi Nazarinia, John Sheridan, Mark C. Thompson, Josie Carberry
Abstract
The near wake produced by a circular cylinder oscillating trans-lationally in a quiescent fluid or, alternatively, by oscillatory flow past a stationary cylinder at low Keulegan-Carpenter (KC) and Stokes (β) numbers has been investigated using Particle Im-age Velocimetry. All but one of the two- and three-dimensional regimes of the Tatsuno & Bearman [11] map were investi-gated. The findings are successfully compared with previous experimental observations and numerical simulations. Two-dimensional Particle Image Velocimetry results of regime B show how the symmetrical pattern of vortices around the cylin-der becomes three-dimensional. Additionally, the instantaneous results of regime E confirm that there is an intermittent change in the direction of the V-shaped vortices around the cylinder.
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The near wake produced by a circular cylinder oscillating trans-lationally in a quiescent fluid or, alternatively, by oscillatory flow past a stationary cylinder at low Keulegan-Carpenter (KC) and Stokes (β) numbers has been investigated using Particle Im-age Velocimetry. All but one of the two- and three-dimensional regimes of the Tatsuno & Bearman [11] map were investi-gated. The findings are successfully compared with previous experimental observations and numerical simulations. Two-dimensional Particle Image Velocimetry results of regime B show how the symmetrical pattern of vortices around the cylin-der becomes three-dimensional. Additionally, the instantaneous results of regime E confirm that there is an intermittent change in the direction of the V-shaped vortices around the cylinder.
Key concepts: Wake, Particle image velocimetry, Vortex, Cylinder, Physics, Mechanics, Vortex shedding, Kármán vortex street