The entropy generation due to mixed convective heat transfer of nanofluids past a rotating circular cylinder placed in a uniform cross stream is investigated via streamline upwind Petrov-Galerkin based finite element method. Nanosized copper (Cu) particles suspended in water are used with Prandtl number (Pr)=6.9. The computations are carried out at a representative Reynolds number (Re) of 100. The dimensionless cylinder rotation rate, a, is varied between 0 and 2. The range of nanoparticle volume fractions (phi) considered is 0 <= phi <= 5%. Effect of aiding buoyancy is brought about by considering two fixed values of the Richardson number (Ri) as 0.5 and 1.0. A new model for predicting the effective viscosity and thermal conductivity of di...
Due to their improved thermal conductivity, nanofluids have the potential to be used as heat transfe...
AbstractA numerical investigation on mixed convection heat transfer has been carried out from an iso...
Abstract The current investigation aims to examine heat transfer as well as entropy generation analy...
The entropy generation due to mixed convective heat transfer of nanofluids past a rotating circular ...
The entropy generation analysis of fully turbulent convective heat transfer to nanofluids in a circu...
In this research, a numerical macroscopic approach has been employed to analyze nanofluid entropy ge...
This paper investigates the buoyancy driven mixed convective flow and heat transfer characteristics ...
This paper investigates the buoyancy driven mixed convective flow and heat transfer characteristics ...
The analysis of the entropy generation in spherical and non-spherical Ag-water nanofluids flow and h...
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 ...
This numerical study considers the mixed convection and the inherent entropy generated in Al 2 ...
In the current research, entropy generation for the water–alumina nanofluid flow is studied in a cir...
Herein, laminar convective heat transfer from two horizontally arranged spheres has been evaluated b...
Due to their improved thermal conductivity, nanofluids have the potential to be used as heat transfe...
AbstractA numerical investigation on mixed convection heat transfer has been carried out from an iso...
Abstract The current investigation aims to examine heat transfer as well as entropy generation analy...
The entropy generation due to mixed convective heat transfer of nanofluids past a rotating circular ...
The entropy generation analysis of fully turbulent convective heat transfer to nanofluids in a circu...
In this research, a numerical macroscopic approach has been employed to analyze nanofluid entropy ge...
This paper investigates the buoyancy driven mixed convective flow and heat transfer characteristics ...
This paper investigates the buoyancy driven mixed convective flow and heat transfer characteristics ...
The analysis of the entropy generation in spherical and non-spherical Ag-water nanofluids flow and h...
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 ...
This numerical study considers the mixed convection and the inherent entropy generated in Al 2 ...
In the current research, entropy generation for the water–alumina nanofluid flow is studied in a cir...
Herein, laminar convective heat transfer from two horizontally arranged spheres has been evaluated b...
Due to their improved thermal conductivity, nanofluids have the potential to be used as heat transfe...
AbstractA numerical investigation on mixed convection heat transfer has been carried out from an iso...
Abstract The current investigation aims to examine heat transfer as well as entropy generation analy...