This paper aimed to study the flow of a nanofluid in a long vertical porous channel when an external uniform magnetic field is impressed. The Buongiorno two-phase model of nanofluid is supposed to be slightly compressible in order to assume the Oberbeck–Boussinesq approximation. The velocity, the induced magnetic field, the temperature, and the nanoparticle volume fraction are analytically obtained. Detailed considerations are drawn for the occurrence of the reverse flow phenomenon. Moreover, a selected set of plots illustrating the influence of various parameters involved in the problem is presented and discussed
This paper concerns the study of the influence of an external magnetic field on the reverse flow occ...
This paper concerns the study of the influence of an external magnetic field on the reverse flow occ...
Here axisymmetric mixed convective, stagnation point flow of electrically conducting nanofluid by a ...
This paper aimed to study the flow of a nanofluid in a long vertical porous channel when an external...
AbstractThe fully developed mixed convection flow in a vertical channel filled with nanofluids in th...
Abstract: The present analysis is concerning the criteria for the onset of flow reversal of the full...
In this paper, we numerically study how the external magnetic field influences the flow and thermal ...
International audienceA numerical study of entropy generation and MHD mixed convection flow of a nan...
The effect of an externally impressed magnetic field on the stability of a binary nanofluid layer in...
Magnetic nanofluids (MNFs) have been the focus of extensive research nowadays owing to their potenti...
AbstractThe laminar fully developed nanofluid flow and heat transfer in a vertical channel are inves...
The laminar fully developed nanofluid flow and heat transfer in a vertical channel are investigated....
Flow characteristics of two immiscible fluids in a vertical semi-corrugated channel with natural con...
This technical brief numerically examines the mixed convection heat transfer of a Cu-water nanofluid...
This analysis theoretically investigates the transport phenomena of mixed convection flows in an enc...
This paper concerns the study of the influence of an external magnetic field on the reverse flow occ...
This paper concerns the study of the influence of an external magnetic field on the reverse flow occ...
Here axisymmetric mixed convective, stagnation point flow of electrically conducting nanofluid by a ...
This paper aimed to study the flow of a nanofluid in a long vertical porous channel when an external...
AbstractThe fully developed mixed convection flow in a vertical channel filled with nanofluids in th...
Abstract: The present analysis is concerning the criteria for the onset of flow reversal of the full...
In this paper, we numerically study how the external magnetic field influences the flow and thermal ...
International audienceA numerical study of entropy generation and MHD mixed convection flow of a nan...
The effect of an externally impressed magnetic field on the stability of a binary nanofluid layer in...
Magnetic nanofluids (MNFs) have been the focus of extensive research nowadays owing to their potenti...
AbstractThe laminar fully developed nanofluid flow and heat transfer in a vertical channel are inves...
The laminar fully developed nanofluid flow and heat transfer in a vertical channel are investigated....
Flow characteristics of two immiscible fluids in a vertical semi-corrugated channel with natural con...
This technical brief numerically examines the mixed convection heat transfer of a Cu-water nanofluid...
This analysis theoretically investigates the transport phenomena of mixed convection flows in an enc...
This paper concerns the study of the influence of an external magnetic field on the reverse flow occ...
This paper concerns the study of the influence of an external magnetic field on the reverse flow occ...
Here axisymmetric mixed convective, stagnation point flow of electrically conducting nanofluid by a ...