Quantitative visualization of vortex ring structure during wall impingement subject to background rotation
Author:
Publisher
Springer Science and Business Media LLC
Subject
Electrical and Electronic Engineering,Condensed Matter Physics
Link
http://link.springer.com/content/pdf/10.1007/s12650-019-00575-4.pdf
Reference49 articles.
1. Arévalo G, Hernández RH, Nicot C, Plaza F (2010) Particle image velocimetry measurements of vortex rings head-on collision with a heated vertical plate. Phys Fluids 22:053604
2. Auerbach D (1988) Some open questions on the flow of circular vortex rings. Fluid Dyn Res 3:209–213
3. Bethke N, Dalziel SB (2012) Resuspension onset and crater erosion by a vortex ring interacting with a particle layer. Phys Fluids 24:063301
4. Boldes U, Ferreri JC (1973) Behavior of vortex rings in the vicinity of a wall. Phys Fluids 16(11):2005–2006
5. Brend MA, Thomas PJ (2009) Decay of vortex rings in a rotating fluid. Phys Fluids 21(4):44105
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1. Flow transitions in collisions between vortex-rings and density interfaces;Journal of Visualization;2020-07-07
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