In this study, the pulsating flow of hydromagnetic nanofluid in a vertical porous channel has been investigated. Blood is considered as a base fluid that is non-Newtonian, and alumina $$(\mathrm{Al}_{2}\mathrm{O}_{3})$$, copper (Cu), silver (Ag) and gold (Au) are considered as nanoparticles. The effects of Joule’s heating and velocity slip at the walls are taken into consideration. Numerical results are obtained by solving the transformed differential equations using the Runge–Kutta fourth-order in addition to the shooting method. Influences of several flow controlling parameters including Grashof number, cross-flow Reynolds number, Hartmann number and frequency parameter on velocity and temperature profiles are examined graphically. The re...
The use of experimental relations to approximate the efficient thermophysical properties of a nanofl...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
In the present work, we emphasize the impacts of an inclined magnetic field, viscous dissipation and...
The present paper deals with the unsteady magnetohydrodynamics (MHD) flow and heat transfer of some ...
Pulsatory movements appear in a variety of fascinating applications involving periodic flow propagat...
This article presents the magnetohydrodynamic flow and heat transfer of water-based nanofluid in div...
In this paper, the slip and porosity effects on the channel walls are studied for the oscillatory fl...
The paper presents the numerical study of heat and mass transfer analysis in a viscous unsteady MHD ...
In this paper, the flow, thermal and concentration analyses of blood as a third grade with gold as n...
The current work deals with the pulsating flow of Au-blood micropolar nanofluid with the existence o...
The current work deals with the pulsatile hydromagnetic flow of blood-based couple stress hybrid nan...
This present study considers flow and heat transfer of nanofluid, conveyed through expanding or cont...
This paper deals with heat transfer analysis on MHD nanofluids in a porous channel with stretching w...
Dynamics of nanofluid comprising a base fluid (water) with copper (Cu) nanoparticles have been consi...
This analysis studies the impact of the pulsating flow of Al$$_2$$O$$_3$$-blood non-Newtonian nanofl...
The use of experimental relations to approximate the efficient thermophysical properties of a nanofl...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
In the present work, we emphasize the impacts of an inclined magnetic field, viscous dissipation and...
The present paper deals with the unsteady magnetohydrodynamics (MHD) flow and heat transfer of some ...
Pulsatory movements appear in a variety of fascinating applications involving periodic flow propagat...
This article presents the magnetohydrodynamic flow and heat transfer of water-based nanofluid in div...
In this paper, the slip and porosity effects on the channel walls are studied for the oscillatory fl...
The paper presents the numerical study of heat and mass transfer analysis in a viscous unsteady MHD ...
In this paper, the flow, thermal and concentration analyses of blood as a third grade with gold as n...
The current work deals with the pulsating flow of Au-blood micropolar nanofluid with the existence o...
The current work deals with the pulsatile hydromagnetic flow of blood-based couple stress hybrid nan...
This present study considers flow and heat transfer of nanofluid, conveyed through expanding or cont...
This paper deals with heat transfer analysis on MHD nanofluids in a porous channel with stretching w...
Dynamics of nanofluid comprising a base fluid (water) with copper (Cu) nanoparticles have been consi...
This analysis studies the impact of the pulsating flow of Al$$_2$$O$$_3$$-blood non-Newtonian nanofl...
The use of experimental relations to approximate the efficient thermophysical properties of a nanofl...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
In the present work, we emphasize the impacts of an inclined magnetic field, viscous dissipation and...