The cause of oscillations of the large-scale circulation of turbulent Rayleigh-Bénard convection
نویسنده
چکیده
In agreement with a recent experimental discovery by Xi et al. (2009), we also find a sloshing mode in experiments on the large-scale circulation (LSC) of turbulent RayleighBénard convection in a cylindrical sample of aspect ratio one. The sloshing mode has the same frequency as the torsional oscillation discovered by Funfschilling and Ahlers (2004). We show that both modes can be described by an extension of a model developed previously (Brown and Ahlers 2008a,b) which consists of permitting a lateral displacement of the LSC circulation plane away from the vertical center line of the sample as well as a variation in displacements with height (such displacements had been excluded in the original model). Pressure gradients produced by the side wall of the container on average center the plane of the LSC so that it prefers to reach its longest diameter. If the LSC is displaced away from this diameter, the walls provide a restoring force. Turbulent fluctuations drive the LSC away from the central alignment, and combined with the restoring force they lead to oscillations. These oscillations are advected along with the LSC. This model predicts the correct wavenumber and phase of the oscillations, as well as estimates of the frequency, amplitude, and probability distributions of the displacements.
منابع مشابه
Torsional oscillations of the large-scale circulation in turbulent Rayleigh–Bénard convection
Measurements over the Rayleigh-number range 10 <∼R<∼ 10 and Prandtl-number range 4.4<∼ σ <∼ 29 that determine the torsional nature and amplitude of the oscillatory mode of the large-scale circulation (LSC) of turbulent Rayleigh–Bénard convection are presented. For cylindrical samples of aspect ratio Γ =1 the mode consists of an azimuthal twist of the near-vertical LSC circulation plane, with th...
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In agreement with a recent experimental discovery by Xi et al. (Phys. Rev. Lett., vol. 102, 2009, paper no. 044503), we also find a sloshing mode in experiments on the large-scale circulation (LSC) of turbulent Rayleigh–Bénard convection in a cylindrical sample of aspect ratio one. The sloshing mode has the same frequency as the torsional oscillation discovered by Funfschilling & Ahlers (Phys. ...
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