Bulletin of the American Physical Society
71st Annual Meeting of the APS Division of Fluid Dynamics
Volume 63, Number 13
Sunday–Tuesday, November 18–20, 2018; Atlanta, Georgia
Session A33: Convection and Buoyancy-driven Flows: General I
8:00 AM–9:57 AM,
Sunday, November 18, 2018
Georgia World Congress Center
Room: B405
Chair: Joerg Schumacher, Technical University of Ilmenau
Abstract ID: BAPS.2018.DFD.A33.7
Abstract: A33.00007 : Control of Rayleigh-Taylor instability properties by differential diffusion effects
9:18 AM–9:31 AM
Presenter:
Anne De Wit
(Univ libre de Bruxelles)
Authors:
Anne De Wit
(Univ libre de Bruxelles)
Shyam Gopalakrishnan
(Univ libre de Bruxelles)
Jorge Carballido-Landeira
(Univ libre de Bruxelles)
Bernard Knaepen
(Univ libre de Bruxelles)
Fingering instabilities of a miscible interface between two fluids in a gravitational field can develop due to adverse density gradients as in the well-known Rayleigh-Taylor (RT) and double-diffusive (DD) instabilities. In the absence of differential diffusion, the mixing rate and the onset time of the RT instability developing when a denser solution of a given solute A overlies a less dense solution of a solute B are respectively proportional and inversely proportional to the initial density difference ∠ρ0 between the two superposed layers. We show both experimentally and theoretically that when the mechanisms of RT and DD instabilities are combined, the properties of the convective growth of the fingers are controlled by the dynamic density jump ∠ρm of the non-monotonic density profile induced by the differential diffusion effects. In particular, the onset time and mixing rate can be controlled by varying the ratio of the diffusion coefficients of the solutes.
Ref: Gopalakrishnan et al. Phys. Rev. E, 98, 011101(R) (2018).
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DFD.A33.7
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