In this paper we propose a simple model that, by comparing different time scales, allows a prediction for the mean flow structure and its dynamics in confined thermal convection in a cylindrical cell of aspect ratio (diameter over cell height) $\Gamma\,{=}\,1/2$. It is shown that the break-up of the mean elongated recirculation into two counter-rotating unity-aspect-ratio rolls, sometimes referred to as flow bimodality, occurs only in a narrow range of Rayleigh numbers whose extrema depend on the Prandtl number. The predictions of the present model are consistent with the published literature, according to which the dual mean flow structure has been observed in numerical simulations at $\hbox{\it Pr}\,{=}\,0.7$ and experiments in gaseous he...
We numerically investigate the radial dependence of the velocity and temperature fluctuations and of...
We analyse the wind and boundary layer properties of turbulent Rayleigh–Bénard convection in a cylin...
Recent studies of rotating Rayleigh-Bénard convection at high rotation rates and strong thermal forc...
In this paper we propose a simple model that, by comparing different time scales, allows a predictio...
In this paper we analyze transitional regimes and mean flow structures for the thermally driven conv...
Previous numerical studies have shown that the ‘ultimate regime of thermal convection’ can be attain...
Previous numerical studies have shown that the ‘ultimate regime of thermal convection’ can be attain...
Previous numerical studies have shown that the ‘ultimate regime of thermal convection’ can be attain...
This talk will discuss onset patterns in Rayleigh-Benard Convection. Rayleigh-Benard Convection refe...
A systematic study of the effects of cell geometry on the dynamics of large-scale flows in turbulent...
A systematic study of turbulent thermal convection is carried out in horizontal cylindrical cells of...
While the heat transfer and the flow dynamics in a cylindrical Rayleigh-Benard (RB) cell are rather ...
Direct real-space multi-point measurements of the velocity and temperature fields were carried out i...
A large-scale circulation velocity, often called the "wind", has been observed in turbulent convecti...
We numerically investigate the radial dependence of the velocity and temperature fluctuations and of...
We analyse the wind and boundary layer properties of turbulent Rayleigh–Bénard convection in a cylin...
Recent studies of rotating Rayleigh-Bénard convection at high rotation rates and strong thermal forc...
In this paper we propose a simple model that, by comparing different time scales, allows a predictio...
In this paper we analyze transitional regimes and mean flow structures for the thermally driven conv...
Previous numerical studies have shown that the ‘ultimate regime of thermal convection’ can be attain...
Previous numerical studies have shown that the ‘ultimate regime of thermal convection’ can be attain...
Previous numerical studies have shown that the ‘ultimate regime of thermal convection’ can be attain...
This talk will discuss onset patterns in Rayleigh-Benard Convection. Rayleigh-Benard Convection refe...
A systematic study of the effects of cell geometry on the dynamics of large-scale flows in turbulent...
A systematic study of turbulent thermal convection is carried out in horizontal cylindrical cells of...
While the heat transfer and the flow dynamics in a cylindrical Rayleigh-Benard (RB) cell are rather ...
Direct real-space multi-point measurements of the velocity and temperature fields were carried out i...
A large-scale circulation velocity, often called the "wind", has been observed in turbulent convecti...
We numerically investigate the radial dependence of the velocity and temperature fluctuations and of...
We analyse the wind and boundary layer properties of turbulent Rayleigh–Bénard convection in a cylin...
Recent studies of rotating Rayleigh-Bénard convection at high rotation rates and strong thermal forc...