Purpose – This paper aims to accentuate the behavior of second-grade hybrid Al2O3–Cu nanofluid flow and its thermal characteristics driven by a stretching/shrinking Riga plate. Design/methodology/approach – The second-grade fluid is considered with the combination of Cu and Al2O3 nanoparticles. Three base fluids namely water, ethylene glycol (EG) and methanol with different Prandtl number are also examined. The formulation of the mathematical model of second-grade hybrid nanofluid complies with the boundary layer approximations. The complexity of the governing model is reduced into a simpler differential equations using the similarity transformation. The bvp4c solver is fully used to solve the reduced equations. The observation of multipl...
The present work highlights the stagnation point flow with mixed convection induced by a Riga plate ...
This study concerns the three-dimensional hybrid nanofluid flow and heat transfer due to a deformabl...
The study scrutinizes the coupled effects of thermal stratification and mixed convection on boundary...
Purpose: This paper aims to accentuate the behavior of second-grade hybrid Al2O3–Cu nanofluid flow a...
Flow and heat transfer phenomena involving hybrid nanofluids has been used in a variety of technolog...
The study scrutinizes the coupled effects of thermal stratification and mixed convection on boundary...
The present study emphasizes the thermally stratified hybrid nanofluid flow due to a permeable stret...
Purpose: This study aims to analyze the unsteady flow of hybrid Cu-Al2O3/water nanofluid over a perm...
Purpose: This study aims to investigate the flow impinging on a stagnation point of a shrinking cyli...
Purpose: This paper aims to investigate the steady flow and heat transfer of a Cu-Al2O3/water hybrid...
The application of appropriate wall mass suction (transpiration) has been reported as the key factor...
In this new era of technology in fluid field, hybrid nanofluid has become a fruitful interest topic ...
To fill the existing literature gap, the numerical solutions for the oblique stagnation-point flow o...
Purpose: The purpose of this paper is to study the flow and heat transfer of a hybrid nanofluid, Cu–...
This paper examines the stagnation point flow towards a stretching/shrinking cylinder in a hybrid na...
The present work highlights the stagnation point flow with mixed convection induced by a Riga plate ...
This study concerns the three-dimensional hybrid nanofluid flow and heat transfer due to a deformabl...
The study scrutinizes the coupled effects of thermal stratification and mixed convection on boundary...
Purpose: This paper aims to accentuate the behavior of second-grade hybrid Al2O3–Cu nanofluid flow a...
Flow and heat transfer phenomena involving hybrid nanofluids has been used in a variety of technolog...
The study scrutinizes the coupled effects of thermal stratification and mixed convection on boundary...
The present study emphasizes the thermally stratified hybrid nanofluid flow due to a permeable stret...
Purpose: This study aims to analyze the unsteady flow of hybrid Cu-Al2O3/water nanofluid over a perm...
Purpose: This study aims to investigate the flow impinging on a stagnation point of a shrinking cyli...
Purpose: This paper aims to investigate the steady flow and heat transfer of a Cu-Al2O3/water hybrid...
The application of appropriate wall mass suction (transpiration) has been reported as the key factor...
In this new era of technology in fluid field, hybrid nanofluid has become a fruitful interest topic ...
To fill the existing literature gap, the numerical solutions for the oblique stagnation-point flow o...
Purpose: The purpose of this paper is to study the flow and heat transfer of a hybrid nanofluid, Cu–...
This paper examines the stagnation point flow towards a stretching/shrinking cylinder in a hybrid na...
The present work highlights the stagnation point flow with mixed convection induced by a Riga plate ...
This study concerns the three-dimensional hybrid nanofluid flow and heat transfer due to a deformabl...
The study scrutinizes the coupled effects of thermal stratification and mixed convection on boundary...