This study investigates the unsteady flow of Al2O3-Cu/water hybrid nanofluid on a stagnation point of a permeable rigid surface. The similarity equations are obtained using similarity variables and then solved using the bvp4c solver. The outcomes show that dual solutions exist for the negative unsteadiness and some mass flux parameters. Besides, the heat transfer rate is intensified with the hybrid nanoparticles. Moreover, the increasing of the mass flux parameter tends to increase the heat transfer rate and the skin friction on the surface. Also, the reduction of the skin friction coefficient is observed, and a higher heat transfer rate is achieved for smaller values of the unsteadiness parameter. Finally, by a temporal stability analysis,...
Boundary layer flow in the industrial applications such as extrusion processes is attributable to im...
This research aims to investigate the effect of suction/injection on the stagnation point flow over ...
Purpose: This paper aims to investigate the steady flow and heat transfer of a Cu-Al2O3/water hybrid...
The time-dependent stagnation point flow (SPF) and heat transfer of a water-based hybrid nanofluid (...
A steady flow and heat transfer of a hybrid nanofluid past a permeable moving surface is investigate...
Purpose: This study aims to investigate the flow impinging on a stagnation point of a shrinking cyli...
The characteristics of heat transfer in the three-dimensional stagnationpoint flow past a stretching...
Theoretical investigations of unsteady boundary layer flow gain interest due to its relatability to ...
Hybrid nanofluids have been proposed as a new class of nanofluids, whose thermal properties and pote...
To fill the existing literature gap, the numerical solutions for the oblique stagnation-point flow o...
Purpose: This study aims to analyze the unsteady flow of hybrid Cu-Al2O3/water nanofluid over a perm...
Previous research has shown that incorporating stagnation-point flow in diverse manufacturing indust...
Purpose – This paper aims to accentuate the behavior of second-grade hybrid Al2O3–Cu nanofluid flow ...
This study concerns the three-dimensional hybrid nanofluid flow and heat transfer due to a deformabl...
This paper examines the behaviour of a hybrid nanofluid flow towards a stagnation point on a stretch...
Boundary layer flow in the industrial applications such as extrusion processes is attributable to im...
This research aims to investigate the effect of suction/injection on the stagnation point flow over ...
Purpose: This paper aims to investigate the steady flow and heat transfer of a Cu-Al2O3/water hybrid...
The time-dependent stagnation point flow (SPF) and heat transfer of a water-based hybrid nanofluid (...
A steady flow and heat transfer of a hybrid nanofluid past a permeable moving surface is investigate...
Purpose: This study aims to investigate the flow impinging on a stagnation point of a shrinking cyli...
The characteristics of heat transfer in the three-dimensional stagnationpoint flow past a stretching...
Theoretical investigations of unsteady boundary layer flow gain interest due to its relatability to ...
Hybrid nanofluids have been proposed as a new class of nanofluids, whose thermal properties and pote...
To fill the existing literature gap, the numerical solutions for the oblique stagnation-point flow o...
Purpose: This study aims to analyze the unsteady flow of hybrid Cu-Al2O3/water nanofluid over a perm...
Previous research has shown that incorporating stagnation-point flow in diverse manufacturing indust...
Purpose – This paper aims to accentuate the behavior of second-grade hybrid Al2O3–Cu nanofluid flow ...
This study concerns the three-dimensional hybrid nanofluid flow and heat transfer due to a deformabl...
This paper examines the behaviour of a hybrid nanofluid flow towards a stagnation point on a stretch...
Boundary layer flow in the industrial applications such as extrusion processes is attributable to im...
This research aims to investigate the effect of suction/injection on the stagnation point flow over ...
Purpose: This paper aims to investigate the steady flow and heat transfer of a Cu-Al2O3/water hybrid...