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Linear Marangoni and Rayleigh-Taylor instabilities of a ferrofluid thick layer in a vertical magnetic field
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M. Hennenberg
Published/Copyright:
November 11, 2005
Abstract
This note introduces the linear stability of a ferrofluid thick layer submitted to gravity and to a normal magnetic field. The compatibility condition is derived taking into account the Rayleigh–Taylor instability and the Marangoni one. The pure normal deformation is analytically solved and these results can be extended to explain the heat conducting case.
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Published Online: 2005-11-11
Published in Print: 2005-09-19
Walter de Gruyter GmbH & Co. KG
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Articles in the same Issue
- Editorial
- Linear Marangoni and Rayleigh-Taylor instabilities of a ferrofluid thick layer in a vertical magnetic field
- Free surface shear flows induced by Marangoni and alternating electromagnetic forces
- Instability of two-phase mixing layers: analysis of exact and approximate base flows from boundary layer theory
- Thermocapillarity-induced vortexes and liquid film dynamics on structured heated walls
- Numerical strategies for the simulation of dissolution kinetics and fluid-dynamic instabilities in liquid couples with a miscibility gap
- A study of heat transfer in liquid bridges near onset of instability
- Experimental and numerical study of the Marangoni convection due to localized laser heating
- Oscillatory instability of Rayleigh-Marangoni-Bénard convection in two-layer liquid system