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Thermovibrational instability of Rayleigh–Marangoni–Benard convection in two-layer fluid systems
Authors:Q.S. Liu   J.Y. Zhou   A. Wang   V.I. Polezhaev   A. Fedyushkin   B.H. Zhou   N. Thi Henri  B. Bernard
Affiliation:aInstitute of Mechanics, Chinese Academy of Sciences, Beijing 100080, China;bInstitute for Problems of Mechanics, Russian Academy of Sciences, Prospect Vernadskogo 101, b1, Moscow 119526, Russia;cL2MP, UMR CNRS 6137, Université d’Aix-Marseille III, 13397 Marseille Cedex 20, France
Abstract:The thermovibrational instability of Rayleigh–Marangoni–Benard convection in a two-layer system under the high-frequency vibration has been investigated by linear instability analysis in the present paper. General equations for the description of the convective flow and within this framework, the generalized Boussinesq approximation are formulated. These equations are dealt with using the averaging method. The theoretical analysis results show that the high-frequency thermovibrations can change the Marangoni–Benard convection instabilities as well as the oscillatory gaps of the Rayleigh–Marangoni–Benard convection in two-layer liquid systems. It is found that vertical high-frequency vibrations can delay convective instability of this system, and damp the convective flow down.
Keywords:Rayleigh–  Marangoni–  Benard convection   Thermovibration   Instability   Two-layer liquids
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