The proficiency of hybrid nanofluid from Cu-Al2O3/water formation as the heat transfer coolant is numerically analyzed using the powerful and user-friendly interface bvp4c in the Matlab software. For that purpose, the Cu-Al2O3/water nanofluid flow between two parallel plates is examined where the lower plate can be deformed while the upper plate moves towards/away from the lower plate. Other considerable factors are the wall mass suction/injection and the magnetic field that applied on the lower plate. The reduced ordinary (similarity) differential equations are solved using the bvp4c application. The validation of this novel model is conducted by comparing a few of numerical values for the reduced case of viscous fluid. The results imply t...
To fill the existing literature gap, the numerical solutions for the oblique stagnation-point flow o...
The study scrutinizes the coupled effects of thermal stratification and mixed convection on boundary...
This paper examines the squeezed hybrid nanofluid flow over a permeable sensor surface with magnetoh...
Abstract The proficiency of hybrid nanofluid from Cu-Al2O3/water formation as the heat transfer cool...
In this new era of technology in fluid field, hybrid nanofluid has become a fruitful interest topic ...
The present study emphasizes the thermally stratified hybrid nanofluid flow due to a permeable stret...
The present work highlights the stagnation point flow with mixed convection induced by a Riga plate ...
This significant study is designed to analyze the axisymmetric hybrid nanofluid flow with heat trans...
This significant study is designed to analyze the axisymmetric hybrid nanofluid flow with heat trans...
Purpose: This study aims to analyze the unsteady flow of hybrid Cu-Al2O3/water nanofluid over a perm...
Purpose: This paper aims to accentuate the behavior of second-grade hybrid Al2O3–Cu nanofluid flow a...
This paper aims to analyze the effects of different nanoparticles shape factor, EMHD and radiation p...
Purpose – This paper aims to accentuate the behavior of second-grade hybrid Al2O3–Cu nanofluid flow ...
Theoretical investigations of unsteady boundary layer flow gain interest due to its relatability to ...
Theoretical investigations of unsteady boundary layer flow gain interest due to its relatability to ...
To fill the existing literature gap, the numerical solutions for the oblique stagnation-point flow o...
The study scrutinizes the coupled effects of thermal stratification and mixed convection on boundary...
This paper examines the squeezed hybrid nanofluid flow over a permeable sensor surface with magnetoh...
Abstract The proficiency of hybrid nanofluid from Cu-Al2O3/water formation as the heat transfer cool...
In this new era of technology in fluid field, hybrid nanofluid has become a fruitful interest topic ...
The present study emphasizes the thermally stratified hybrid nanofluid flow due to a permeable stret...
The present work highlights the stagnation point flow with mixed convection induced by a Riga plate ...
This significant study is designed to analyze the axisymmetric hybrid nanofluid flow with heat trans...
This significant study is designed to analyze the axisymmetric hybrid nanofluid flow with heat trans...
Purpose: This study aims to analyze the unsteady flow of hybrid Cu-Al2O3/water nanofluid over a perm...
Purpose: This paper aims to accentuate the behavior of second-grade hybrid Al2O3–Cu nanofluid flow a...
This paper aims to analyze the effects of different nanoparticles shape factor, EMHD and radiation p...
Purpose – This paper aims to accentuate the behavior of second-grade hybrid Al2O3–Cu nanofluid flow ...
Theoretical investigations of unsteady boundary layer flow gain interest due to its relatability to ...
Theoretical investigations of unsteady boundary layer flow gain interest due to its relatability to ...
To fill the existing literature gap, the numerical solutions for the oblique stagnation-point flow o...
The study scrutinizes the coupled effects of thermal stratification and mixed convection on boundary...
This paper examines the squeezed hybrid nanofluid flow over a permeable sensor surface with magnetoh...