The results from direct numerical simulations of turbulent Boussinesq convection are briefly presented. The flow is computed for a cylindrical cell of aspect ratio 1/2 in order to compare with the results from recent experiments. The results span eight decades of Ra from 2×10^6 to 2×10^14 and form the baseline data for a strictly Boussinesq fluid of constant Prandtl number (Pr = 0.7). A conclusion is that the Nusselt number varies nearly as the 1/3 power of Ra for about four decades towards the upper end of the Ra range covered
The classical example for thermally driven turbulence is Rayleigh-Bénard (RB) flow, i.e., flow in a ...
The velocity and reorientation of the large-scale circulation (LSC) in Rayleigh-Benard convection (R...
Statistical properties of turbulent Rayleigh-Bénard convection (RBC) are investigated experimentally...
The results from direct numerical simulations of turbulent Boussinesq convection are briefly present...
We summarize the results of an extensive campaign of direct numerical simulations of Rayleigh–Bénard...
The progress in our understanding of several aspects of turbulent Rayleigh-Bénard convection is revi...
We summarize the results of an extensive campaign of direct numerical simulations of Rayleigh–Bénard...
We report temperature measurements for a cylindrical sample of turbulent Rayleigh-Bénard convection ...
In this thesis we present the results of an extensive campaign of direct numerical simulations of Ra...
Rayleigh-B?nard convection in cylindrical cells was examined in order to gather pertinent data regar...
Rayleigh-Benard convection occurs in fluids in enclosed containers under circumstances where heat is...
Natural convection in rectangular two-dimensional cavities with differentially heated side walls is ...
The Ra and Pr number scaling of the Nusselt number Nu, the Reynolds number Re, the temperature fluct...
We report the observation of superstructures, i.e., very large-scale and long living coherent struct...
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 ...
The velocity and reorientation of the large-scale circulation (LSC) in Rayleigh-Benard convection (R...
Statistical properties of turbulent Rayleigh-Bénard convection (RBC) are investigated experimentally...
The results from direct numerical simulations of turbulent Boussinesq convection are briefly present...
We summarize the results of an extensive campaign of direct numerical simulations of Rayleigh–Bénard...
The progress in our understanding of several aspects of turbulent Rayleigh-Bénard convection is revi...
We summarize the results of an extensive campaign of direct numerical simulations of Rayleigh–Bénard...
We report temperature measurements for a cylindrical sample of turbulent Rayleigh-Bénard convection ...
In this thesis we present the results of an extensive campaign of direct numerical simulations of Ra...
Rayleigh-B?nard convection in cylindrical cells was examined in order to gather pertinent data regar...
Rayleigh-Benard convection occurs in fluids in enclosed containers under circumstances where heat is...
Natural convection in rectangular two-dimensional cavities with differentially heated side walls is ...
The Ra and Pr number scaling of the Nusselt number Nu, the Reynolds number Re, the temperature fluct...
We report the observation of superstructures, i.e., very large-scale and long living coherent struct...
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 ...
The velocity and reorientation of the large-scale circulation (LSC) in Rayleigh-Benard convection (R...
Statistical properties of turbulent Rayleigh-Bénard convection (RBC) are investigated experimentally...