This article analyzes the effects of joule heating, Hall and Ion-slip parameter on entropy generation in mixed convective electrically conducting nanofluid flow between two parallel coaxial disks in the presence of strong magnetic field. The governing equations are non-dimensionalized and the resulting system of nonlinear ordinary differential equations are solved using Homotopy Analysis Method. The velocity, temperature and nanoparticle concentration profiles are presented graphically for various values of governing parameters. Further, these profiles are won’t to evaluate the entropy generation and Bejan number
Present study analyzes the issue of entropy generation of water with Al2O3 nanoparticles in a horizo...
In this article, entropy generation of an Eyring–Powell nanofluid through a permeable stretching sur...
A numerical simulation of entropy generation due to MHD mixed convective of water-copper nanofluid i...
The present semi-analytical investigation covers the impact of aligned magnetic field, Ohmic dissipa...
Stimulated by thermal optimization in magnetic materials process engineering, the present work inves...
Stimulated by thermal optimization in magnetic materials process engineering, the present work inves...
This study deals with entropy analysis on natural convection flow of electrical magneto-nanofluid ov...
International audienceA numerical study of entropy generation and MHD mixed convection flow of a nan...
This study addresses entropy generation in magnetohydrodynamic flow of a second grade nanofluid over...
This paper reports the unsteady magnetohydrodynamic (MHD) natural convection flow of nanofluid over ...
Present communication addresses MHD radiative nanomaterial flow of Ree-Eying fluid between two coaxi...
A theoretical study of unsteady magnetohydrodynamic boundary layer stagnation point flow, heat and m...
The viscous and Joule dissipation effects on stagnation point flow of thermally radiating Casson nan...
The unsteady mixed convection flow of electrical conducting nanofluid and heat transfer due to a per...
In this article, entropy generation of an Eyring–Powell nanofluid through a permeable stretching sur...
Present study analyzes the issue of entropy generation of water with Al2O3 nanoparticles in a horizo...
In this article, entropy generation of an Eyring–Powell nanofluid through a permeable stretching sur...
A numerical simulation of entropy generation due to MHD mixed convective of water-copper nanofluid i...
The present semi-analytical investigation covers the impact of aligned magnetic field, Ohmic dissipa...
Stimulated by thermal optimization in magnetic materials process engineering, the present work inves...
Stimulated by thermal optimization in magnetic materials process engineering, the present work inves...
This study deals with entropy analysis on natural convection flow of electrical magneto-nanofluid ov...
International audienceA numerical study of entropy generation and MHD mixed convection flow of a nan...
This study addresses entropy generation in magnetohydrodynamic flow of a second grade nanofluid over...
This paper reports the unsteady magnetohydrodynamic (MHD) natural convection flow of nanofluid over ...
Present communication addresses MHD radiative nanomaterial flow of Ree-Eying fluid between two coaxi...
A theoretical study of unsteady magnetohydrodynamic boundary layer stagnation point flow, heat and m...
The viscous and Joule dissipation effects on stagnation point flow of thermally radiating Casson nan...
The unsteady mixed convection flow of electrical conducting nanofluid and heat transfer due to a per...
In this article, entropy generation of an Eyring–Powell nanofluid through a permeable stretching sur...
Present study analyzes the issue of entropy generation of water with Al2O3 nanoparticles in a horizo...
In this article, entropy generation of an Eyring–Powell nanofluid through a permeable stretching sur...
A numerical simulation of entropy generation due to MHD mixed convective of water-copper nanofluid i...