AbstractIn this paper, natural convection of a non-Newtonian nanofluid flow between two vertical flat plates is investigated analytically and numerically. Sodium alginate (SA) is considered as the base non-Newtonian fluid, and then copper (Cu) and silver (Ag) as nanoparticles are added to it. The effective thermal conductivity and viscosity of nanofluid are calculated by Maxwell–Garnetts (MG) and Brinkman models, respectively. Least Square Method (LSM), Differential Transformation Method (DTM) and fourth-order Runge–Kutta numerical method (NUM) are used to solve the present problem. The influence of the some physical parameters such as nanofluid volume friction on non-dimensional velocity and temperature profiles is considered. The results ...
The present study explores the impact of viscous dissipation on unsteady two dimensional boundary la...
Natural convection heat transfer in nanofluids has been investigated numerically using computational...
In this paper, we have presented MHD natural convection boundary layer flow, heat and mass transfer ...
AbstractIn this paper, natural convection of a non-Newtonian nanofluid flow between two vertical fla...
In this study, the steady incompressible flow of a non-Newtonian sodium alginate (SA) fluid conveyin...
This article aims to study the mixed convection heat transfer in non-Newtonian nanofluids over an in...
A rigorous analysis of unsteady magnetohydrodynamic mixed convection and electrically conducting nan...
In this paper, the natural convection of a non-Newtonian Cu–water nanofluid between two infinite par...
Natural convection boundary layer flow over a solid sphere in micropolar nanofluid with prescribed w...
AbstractA comprehensive numerical study of heat transfer enhancement in MHD free convection flow ove...
The flow field, thermal field, and solutal field exposed to thermal and solutal buoyancy forces have...
In this study, we have addressed the flow of hybrid nanofluid (Cu−Al2O3-Sodium Alginate), nanofluid ...
The present study explores the impact of viscous dissipation on unsteady two dimensional boundary la...
A comprehensive numerical study of heat transfer enhancement in MHD free convection flow over vertic...
The studies of classical nanofluids are restricted to models described by partial differential equat...
The present study explores the impact of viscous dissipation on unsteady two dimensional boundary la...
Natural convection heat transfer in nanofluids has been investigated numerically using computational...
In this paper, we have presented MHD natural convection boundary layer flow, heat and mass transfer ...
AbstractIn this paper, natural convection of a non-Newtonian nanofluid flow between two vertical fla...
In this study, the steady incompressible flow of a non-Newtonian sodium alginate (SA) fluid conveyin...
This article aims to study the mixed convection heat transfer in non-Newtonian nanofluids over an in...
A rigorous analysis of unsteady magnetohydrodynamic mixed convection and electrically conducting nan...
In this paper, the natural convection of a non-Newtonian Cu–water nanofluid between two infinite par...
Natural convection boundary layer flow over a solid sphere in micropolar nanofluid with prescribed w...
AbstractA comprehensive numerical study of heat transfer enhancement in MHD free convection flow ove...
The flow field, thermal field, and solutal field exposed to thermal and solutal buoyancy forces have...
In this study, we have addressed the flow of hybrid nanofluid (Cu−Al2O3-Sodium Alginate), nanofluid ...
The present study explores the impact of viscous dissipation on unsteady two dimensional boundary la...
A comprehensive numerical study of heat transfer enhancement in MHD free convection flow over vertic...
The studies of classical nanofluids are restricted to models described by partial differential equat...
The present study explores the impact of viscous dissipation on unsteady two dimensional boundary la...
Natural convection heat transfer in nanofluids has been investigated numerically using computational...
In this paper, we have presented MHD natural convection boundary layer flow, heat and mass transfer ...