This article describes the impact of slip conditions on nanofluid flow through a stretching sheet. Nanofluids are very helpful to enhance the convective heat transfer in a boundary layer flow. Prandtl number also play a major role in controlling the thermal and momentum boundary layers. For this purpose, we have considered a model for effective Prandtl number which is borrowed by means of experimental analysis on a nano boundary layer, steady, two-dimensional incompressible flow through a stretching sheet. We have considered γAl2O3-H2O and Al2O3-C2H6O2 nanoparticles for the governing flow problem. An entropy generation analysis is also presented with the help of the second law of thermodynamics. A numerical technique known as Successive Tay...
A numerical investigation of Casson nanofluid flow, heat transfer and entropy generation over a hori...
The solution to heat transfer problem due to a stretching/shrinking sheet and the steady two-dimensi...
In the present article, we considered two-dimensional steady incompressible Oldroyd-B nanofluid flow...
Nanoparticles provide potentials in augmenting the performance of convective heat transfer in the bo...
In this article, the semi-analytical/numerical technique known as the homotopy analysis method (HAM)...
In this article, the semi-analytical/numerical technique known as the homotopy analysis method (H...
This article presents a detailed theoretical and computational analysis of alumina and titania-water...
This article presents a detailed theoretical and computational analysis of alumina and titania-water...
The steady two-dimensional boundary layer flow of nanofluids over a flat plate is studied analytical...
AbstractIn this article, entropy generation on non-Newtonian Eyring-Powell nanofluid has been analys...
In this article, entropy generation on non-Newtonian Eyring-Powell nanofluid has been analysed throu...
The boundary layer flow induced in a nanofluid due to a linearly stretching sheet is studied numeric...
In the present article, we considered two-dimensional steady incompressible Oldroyd-B nanofluid flow...
This article presents a detailed theoretical and computational analysis of alumina and titania-water...
The unsteady boundary layer flow of a nanofluid over a permeable stretching/shrinking sheet is theor...
A numerical investigation of Casson nanofluid flow, heat transfer and entropy generation over a hori...
The solution to heat transfer problem due to a stretching/shrinking sheet and the steady two-dimensi...
In the present article, we considered two-dimensional steady incompressible Oldroyd-B nanofluid flow...
Nanoparticles provide potentials in augmenting the performance of convective heat transfer in the bo...
In this article, the semi-analytical/numerical technique known as the homotopy analysis method (HAM)...
In this article, the semi-analytical/numerical technique known as the homotopy analysis method (H...
This article presents a detailed theoretical and computational analysis of alumina and titania-water...
This article presents a detailed theoretical and computational analysis of alumina and titania-water...
The steady two-dimensional boundary layer flow of nanofluids over a flat plate is studied analytical...
AbstractIn this article, entropy generation on non-Newtonian Eyring-Powell nanofluid has been analys...
In this article, entropy generation on non-Newtonian Eyring-Powell nanofluid has been analysed throu...
The boundary layer flow induced in a nanofluid due to a linearly stretching sheet is studied numeric...
In the present article, we considered two-dimensional steady incompressible Oldroyd-B nanofluid flow...
This article presents a detailed theoretical and computational analysis of alumina and titania-water...
The unsteady boundary layer flow of a nanofluid over a permeable stretching/shrinking sheet is theor...
A numerical investigation of Casson nanofluid flow, heat transfer and entropy generation over a hori...
The solution to heat transfer problem due to a stretching/shrinking sheet and the steady two-dimensi...
In the present article, we considered two-dimensional steady incompressible Oldroyd-B nanofluid flow...