The entropy generation analysis of fully turbulent convective heat transfer to nanofluids in a circular tube is investigated numerically using the Reynolds Averaged Navier–Stokes (RANS) model. The nanofluids with particle concentration of 0%, 1%, 2%, 4% and 6% are treated as single phases of effective properties. The uniform heat flux is enforced at the tube wall. To confirm the validity of the numerical approach, the results have been compared with empirical correlations and analytical formula. The self-similarity profiles of local entropy generation are also studied, in which the peak values of entropy generation by direct dissipation, turbulent dissipation, mean temperature gradients and fluctuating temperature gradients for different Re...
The entropy generation based on the second law of thermodynamics is investigated for turbulent force...
Eulerian–Eulerian multi-phase mixture model is applied to numerically analyse the turbulent flow and...
The entropy generation due to mixed convective heat transfer of nanofluids past a rotating circular ...
A parametric investigation of entropy generation of nanofluid turbulent forced convection inside a ...
A parametric investigation of entropy generation of nanofluid turbulent forced convection inside a ...
A parametric investigation of entropy generation of nanofluid turbulent forced convection inside a ...
A parametric investigation of entropy generation of nanofluid turbulent forced convection inside a c...
The present paper analyzes the turbulent convection of Al2O3-water nanofluid inside a circular secti...
In this article, developing turbulent forced convection flow of a water-Al2O3 nanofluid in a square ...
Due to their improved thermal conductivity, nanofluids have the potential to be used as heat transfe...
Entropy generation is always a matter of concern in a heat transfer system. It denotes the amount of...
In this study, thermo-physical and geometrical parameters affecting entropy generation of nanoflu...
In this study, thermo-physical and geometrical parameters affecting entropy generation of nanofluid ...
In this research, a numerical macroscopic approach has been employed to analyze nanofluid entropy ge...
Nanofluids can afford excellent thermal performance and have a major role in energy conservation asp...
The entropy generation based on the second law of thermodynamics is investigated for turbulent force...
Eulerian–Eulerian multi-phase mixture model is applied to numerically analyse the turbulent flow and...
The entropy generation due to mixed convective heat transfer of nanofluids past a rotating circular ...
A parametric investigation of entropy generation of nanofluid turbulent forced convection inside a ...
A parametric investigation of entropy generation of nanofluid turbulent forced convection inside a ...
A parametric investigation of entropy generation of nanofluid turbulent forced convection inside a ...
A parametric investigation of entropy generation of nanofluid turbulent forced convection inside a c...
The present paper analyzes the turbulent convection of Al2O3-water nanofluid inside a circular secti...
In this article, developing turbulent forced convection flow of a water-Al2O3 nanofluid in a square ...
Due to their improved thermal conductivity, nanofluids have the potential to be used as heat transfe...
Entropy generation is always a matter of concern in a heat transfer system. It denotes the amount of...
In this study, thermo-physical and geometrical parameters affecting entropy generation of nanoflu...
In this study, thermo-physical and geometrical parameters affecting entropy generation of nanofluid ...
In this research, a numerical macroscopic approach has been employed to analyze nanofluid entropy ge...
Nanofluids can afford excellent thermal performance and have a major role in energy conservation asp...
The entropy generation based on the second law of thermodynamics is investigated for turbulent force...
Eulerian–Eulerian multi-phase mixture model is applied to numerically analyse the turbulent flow and...
The entropy generation due to mixed convective heat transfer of nanofluids past a rotating circular ...