Two-dimensional vortex-dipole interactions in a stratified fluid

Author:

Voropayev S. I.,Afanasyev Ya. D.

Abstract

Planar motion produced when a viscous fluid is forced from an initial state of rest is studied. We consider a vortex dipole produced by the action of a point force (Cantwell 1986), and a vortex quadrupole produced by the action of two equal forces of opposite direction. We also present results from an experimental investigation into the dynamics of the interactions between vortex dipoles as well as between vortex dipoles and a vertical wall in a stratified fluid. Theoretical consideration reveals that the dynamics of two-dimensional vortex-dipole interactions are determined by two main governing parameters: the dipolar intensity of the vorticity distribution (momentum) and the quadrupolar intensity of the vorticity distribution of the flow. We document details of different basic types of interactions and present a physical interpretation of the results obtained in terms of vortex multipoles: dipoles, quadrupoles and their combinations.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference23 articles.

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2. Gantwell, B. J. 1986 Viscous starting jets.J. Fluid Mech. 173,159–189.

3. Federov, K. N. & Ginzburg, A. I. 1989 Surface Layer of the Ocean .Leningrad:Gidrometeoizdat.

4. Voropayev, S. I. & Filippov, I. A. 1985 Development of a horizontal jet in a homogeneous and stratified fluids. Laboratory experiments.Izv. Akad. Nauk SSSR, Fiz. Atmos. Okeana. 21,964–972.

5. Afanasyev, Ya. D. & Voropayev, S. I. 1989b On the spiral structure of the mushroom-like currents in the ocean.Dokl. Akad. Nauk SSSR 308,179–183.

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