The purpose of this communication is to examine the collective influence of heat and mass transfer on magnetohydrodyanmics (MHD) water functionalized oxide or non-oxide nanofluid flows through porous medium together with thermal radiation and chemical reaction effects. The Newtonian heating on the accelerated wall in the presence of different nanoparticles is considered first time and not explored in earlier investigations. To calculate the temperature and velocity fields, the Maxwell model for effective thermal conductivity with relatively large particles is used. Three types of base fluids namely water, kerosene and engine oil containing different types of oxide and non-oxide nanoparticles are taken for this study. Analytic solutions of t...
Energy transfer in mixed convection unsteady magnetohydrodynamic (MHD) flow of an incompressible nan...
In this study, we analyze the effects of thermal radiation and magnetic field on unsteady natural co...
It is essential to account the variability in thermophysical properties such as thermal conductivity...
© 2018 International Information and Engineering Technology Association. All Rights Reserved. The ai...
889-897The main purpose of this article is to study the effect of MHD, internal heat generation, the...
AbstractA mathematical model is developed for the nanofluid flow and heat transfer due to the impuls...
This paper aimed to investigate the transient dissipative MHD double diffusive free convective bound...
The present paper deals with the unsteady magnetohydrodynamics (MHD) flow and heat transfer of some ...
In this paper the effects of Diffusion thermo, radiation absorption and chemical reaction on MHD fre...
Abstract This article investigates the influence of ramped wall velocity and ramped wall temperature...
AbstractIn this paper we investigated an unsteady free convection flow of a nanofluid bounded by a m...
AbstractIn this paper the effects of Diffusion thermo, radiation absorption and chemical reaction on...
This paper studies magnetogydrodynamic (MHD) and porosity effects on ferrofluid over an oscillating ...
We analysed the flow and heat transfer characteristics of a nanofluid in porous medium bounded by a ...
In this study we analyzed the influence of radiation and chemical reaction on MHD nanofluid flow ove...
Energy transfer in mixed convection unsteady magnetohydrodynamic (MHD) flow of an incompressible nan...
In this study, we analyze the effects of thermal radiation and magnetic field on unsteady natural co...
It is essential to account the variability in thermophysical properties such as thermal conductivity...
© 2018 International Information and Engineering Technology Association. All Rights Reserved. The ai...
889-897The main purpose of this article is to study the effect of MHD, internal heat generation, the...
AbstractA mathematical model is developed for the nanofluid flow and heat transfer due to the impuls...
This paper aimed to investigate the transient dissipative MHD double diffusive free convective bound...
The present paper deals with the unsteady magnetohydrodynamics (MHD) flow and heat transfer of some ...
In this paper the effects of Diffusion thermo, radiation absorption and chemical reaction on MHD fre...
Abstract This article investigates the influence of ramped wall velocity and ramped wall temperature...
AbstractIn this paper we investigated an unsteady free convection flow of a nanofluid bounded by a m...
AbstractIn this paper the effects of Diffusion thermo, radiation absorption and chemical reaction on...
This paper studies magnetogydrodynamic (MHD) and porosity effects on ferrofluid over an oscillating ...
We analysed the flow and heat transfer characteristics of a nanofluid in porous medium bounded by a ...
In this study we analyzed the influence of radiation and chemical reaction on MHD nanofluid flow ove...
Energy transfer in mixed convection unsteady magnetohydrodynamic (MHD) flow of an incompressible nan...
In this study, we analyze the effects of thermal radiation and magnetic field on unsteady natural co...
It is essential to account the variability in thermophysical properties such as thermal conductivity...