The progress in our understanding of several aspects of turbulent Rayleigh-Bénard convection is reviewed. The focus is on the question of how the Nusselt number and the Reynolds number depend on the Rayleigh number Ra and the Prandtl number Pr, and on how the thicknesses of the thermal and the kinetic boundary layers scale with Ra and Pr. Non-Oberbeck-Boussinesq effects and the dynamics of the large scale convection roll are addressed as well. The review ends with a list of challenges for future research on the turbulent Rayleigh-Bénard system
A novel approach for the study of turbulent Rayleigh-B\ue9nard convection (RBC) in the compound phys...
A novel approach for the study of turbulent Rayleigh-Bénard convection (RBC) in the compound physic...
A novel approach for the study of turbulent Rayleigh-Bénard convection (RBC) in the compound physic...
Recent experimental, numerical and theoretical advances in turbulent Rayleigh-Bénard convection are ...
The Ra and Pr number scaling of the Nusselt number Nu, the Reynolds number Re, the temperature fluct...
The Ra and Pr number scaling of the Nusselt number Nu, the Reynolds number Re, the temperature fluct...
The Ra and Pr number scaling of the Nusselt number Nu, the Reynolds number Re, the temperature fluct...
A systematic theory for the scaling of the Nusselt number Nu and of the A systematic theory for the ...
Using a closed set of boundary layer equations [E. S. C. Ching et al., Phys. Rev. Research 1, 033037...
We investigate the effect of fluctuations in thermal boundary layer on heat transfer in turbulent Ra...
We investigate the effect of fluctuations in thermal boundary layer on heat transfer in turbulent Ra...
We investigate the effect of fluctuations in thermal boundary layer on heat transfer in turbulent Ra...
The classical example for thermally driven turbulence is Rayleigh-Bénard (RB) flow, i.e., flow in a ...
The classical example for thermally driven turbulence is Rayleigh-Bénard (RB) flow, i.e., flow in a ...
For the study presented DNS and high-resolved LES of turbulent Rayleigh-Bénard convection were condu...
A novel approach for the study of turbulent Rayleigh-B\ue9nard convection (RBC) in the compound phys...
A novel approach for the study of turbulent Rayleigh-Bénard convection (RBC) in the compound physic...
A novel approach for the study of turbulent Rayleigh-Bénard convection (RBC) in the compound physic...
Recent experimental, numerical and theoretical advances in turbulent Rayleigh-Bénard convection are ...
The Ra and Pr number scaling of the Nusselt number Nu, the Reynolds number Re, the temperature fluct...
The Ra and Pr number scaling of the Nusselt number Nu, the Reynolds number Re, the temperature fluct...
The Ra and Pr number scaling of the Nusselt number Nu, the Reynolds number Re, the temperature fluct...
A systematic theory for the scaling of the Nusselt number Nu and of the A systematic theory for the ...
Using a closed set of boundary layer equations [E. S. C. Ching et al., Phys. Rev. Research 1, 033037...
We investigate the effect of fluctuations in thermal boundary layer on heat transfer in turbulent Ra...
We investigate the effect of fluctuations in thermal boundary layer on heat transfer in turbulent Ra...
We investigate the effect of fluctuations in thermal boundary layer on heat transfer in turbulent Ra...
The classical example for thermally driven turbulence is Rayleigh-Bénard (RB) flow, i.e., flow in a ...
The classical example for thermally driven turbulence is Rayleigh-Bénard (RB) flow, i.e., flow in a ...
For the study presented DNS and high-resolved LES of turbulent Rayleigh-Bénard convection were condu...
A novel approach for the study of turbulent Rayleigh-B\ue9nard convection (RBC) in the compound phys...
A novel approach for the study of turbulent Rayleigh-Bénard convection (RBC) in the compound physic...
A novel approach for the study of turbulent Rayleigh-Bénard convection (RBC) in the compound physic...