This article presents a detailed theoretical and computational analysis of alumina and titania-water nanofluid flow from a horizontal stretching sheet. At the boundary of the sheet (wall), velocity slip, thermal slip and Stefan blowing effects are considered. The Pak-Cho viscosity and thermal conductivity model is employed together with the non-homogeneous Buongiorno nanofluid model. The equations for mass, momentum, energy and nanoparticle species conservation are transformed via Lie-group transformations into a dimensionless system. The partial differential boundary value problem is therefore rendered into nonlinear ordinary differential form. With appropriate boundary conditions, the emerging normalized equations are solved with the semi...
The present article investigates the combined influence of nonlinear radiation, Stefan blowing and c...
This study investigates the influence of thermal radiation and heat generation/absorption on a two d...
Nanofluids have better surface stability, thermal absorption, and distribution capacities are produc...
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...
This research investigates characteristics of entropy generation on stagnation point flow of Nimonic...
The present article investigates the combined influence of nonlinear radiation, Stefan blowing and c...
The present article investigates the combined influence of nonlinear radiation, Stefan blowing and c...
This article describes the impact of slip conditions on nanofluid flow through a stretching sheet. N...
A theoretical study of unsteady magnetohydrodynamic boundary layer stagnation point flow, heat and m...
A theoretical study of unsteady magnetohydrodynamic boundary layer stagnation point flow, heat and m...
A theoretical study of unsteady magnetohydrodynamic boundary layer stagnation point flow, heat and m...
The field of nanofluidics research has spanned over the past decade with a variety of promising appl...
The field of nanofluidics research has spanned over the past decade with a variety of promising appl...
A theoretical study of unsteady magnetohydrodynamic boundary layer stagnation point flow, heat and m...
The present article investigates the combined influence of nonlinear radiation, Stefan blowing and c...
This study investigates the influence of thermal radiation and heat generation/absorption on a two d...
Nanofluids have better surface stability, thermal absorption, and distribution capacities are produc...
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...
This research investigates characteristics of entropy generation on stagnation point flow of Nimonic...
The present article investigates the combined influence of nonlinear radiation, Stefan blowing and c...
The present article investigates the combined influence of nonlinear radiation, Stefan blowing and c...
This article describes the impact of slip conditions on nanofluid flow through a stretching sheet. N...
A theoretical study of unsteady magnetohydrodynamic boundary layer stagnation point flow, heat and m...
A theoretical study of unsteady magnetohydrodynamic boundary layer stagnation point flow, heat and m...
A theoretical study of unsteady magnetohydrodynamic boundary layer stagnation point flow, heat and m...
The field of nanofluidics research has spanned over the past decade with a variety of promising appl...
The field of nanofluidics research has spanned over the past decade with a variety of promising appl...
A theoretical study of unsteady magnetohydrodynamic boundary layer stagnation point flow, heat and m...
The present article investigates the combined influence of nonlinear radiation, Stefan blowing and c...
This study investigates the influence of thermal radiation and heat generation/absorption on a two d...
Nanofluids have better surface stability, thermal absorption, and distribution capacities are produc...