Computational Role of Polymer-Based Ternary Hybrid Nanofluid Between Convergent/Divergent Channels With Radiation and Stretchable/Shrinkable Wall Effects

The present article introduces a numerical and analytical study of ternary hybrid nanoparticle (Cu, Fe3O4, and SiO2) with base fluid of Polymer. Heat Transfer on MHD Jeffery–Hamel flow with multiple effects is taken into account. Innovative results in the current study are obtained by utilizing the...

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Main Authors: Mohamed Kezzar, Amar Dib, Umair Khan, Ismail Tabet, Mohamed R. Sari, Syed Modassir Hussain
Format: Article
Language:English
Published: Wiley 2025-01-01
Series:Journal of Mathematics
Online Access:http://dx.doi.org/10.1155/jom/6613165
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author Mohamed Kezzar
Amar Dib
Umair Khan
Ismail Tabet
Mohamed R. Sari
Syed Modassir Hussain
author_facet Mohamed Kezzar
Amar Dib
Umair Khan
Ismail Tabet
Mohamed R. Sari
Syed Modassir Hussain
author_sort Mohamed Kezzar
collection DOAJ
description The present article introduces a numerical and analytical study of ternary hybrid nanoparticle (Cu, Fe3O4, and SiO2) with base fluid of Polymer. Heat Transfer on MHD Jeffery–Hamel flow with multiple effects is taken into account. Innovative results in the current study are obtained by utilizing the combined effect of nonlinear thermal radiation and the stretchable/shrinkable walls. The modelled partial differential equations underwent a transformation to nonlinear ordinary differential equations using similarity transformation. Subsequently, an analytical solution was obtained by employing the ADM method. To validate the accuracy of the results, a comparison was made with outcomes from the HAM-based Mathematica package and the Runge–Kutta–Fehlberg fourth-fifth order approach featuring shooting technique. The effect of diverse parameters on dimensionless velocity, temperature profiles, skin friction coefficient and Nusselt number has been investigated and interpreted through the tabular and graphical results. When nanoparticles are present in the base fluid, the rate of heat transmission is upsurged for both convergent-divergent channels. In addition, the Nusselt number boosts with the augment of nanoparticle volume fraction. Results obtained also reveal that the nanofluid temperature upsurges in the stretching zone (C>0) and drops in the shrinking zone (C<0).
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spelling doaj-art-c3dcf90e1ca445599df39eabdd5453c22025-08-20T02:12:10ZengWileyJournal of Mathematics2314-47852025-01-01202510.1155/jom/6613165Computational Role of Polymer-Based Ternary Hybrid Nanofluid Between Convergent/Divergent Channels With Radiation and Stretchable/Shrinkable Wall EffectsMohamed Kezzar0Amar Dib1Umair Khan2Ismail Tabet3Mohamed R. Sari4Syed Modassir Hussain5Mechanical Engineering DepartmentMechanical Engineering DepartmentDepartment of MathematicsPhysical Engineering DepartmentMechanical Engineering DepartmentDepartment of MathematicsThe present article introduces a numerical and analytical study of ternary hybrid nanoparticle (Cu, Fe3O4, and SiO2) with base fluid of Polymer. Heat Transfer on MHD Jeffery–Hamel flow with multiple effects is taken into account. Innovative results in the current study are obtained by utilizing the combined effect of nonlinear thermal radiation and the stretchable/shrinkable walls. The modelled partial differential equations underwent a transformation to nonlinear ordinary differential equations using similarity transformation. Subsequently, an analytical solution was obtained by employing the ADM method. To validate the accuracy of the results, a comparison was made with outcomes from the HAM-based Mathematica package and the Runge–Kutta–Fehlberg fourth-fifth order approach featuring shooting technique. The effect of diverse parameters on dimensionless velocity, temperature profiles, skin friction coefficient and Nusselt number has been investigated and interpreted through the tabular and graphical results. When nanoparticles are present in the base fluid, the rate of heat transmission is upsurged for both convergent-divergent channels. In addition, the Nusselt number boosts with the augment of nanoparticle volume fraction. Results obtained also reveal that the nanofluid temperature upsurges in the stretching zone (C>0) and drops in the shrinking zone (C<0).http://dx.doi.org/10.1155/jom/6613165
spellingShingle Mohamed Kezzar
Amar Dib
Umair Khan
Ismail Tabet
Mohamed R. Sari
Syed Modassir Hussain
Computational Role of Polymer-Based Ternary Hybrid Nanofluid Between Convergent/Divergent Channels With Radiation and Stretchable/Shrinkable Wall Effects
Journal of Mathematics
title Computational Role of Polymer-Based Ternary Hybrid Nanofluid Between Convergent/Divergent Channels With Radiation and Stretchable/Shrinkable Wall Effects
title_full Computational Role of Polymer-Based Ternary Hybrid Nanofluid Between Convergent/Divergent Channels With Radiation and Stretchable/Shrinkable Wall Effects
title_fullStr Computational Role of Polymer-Based Ternary Hybrid Nanofluid Between Convergent/Divergent Channels With Radiation and Stretchable/Shrinkable Wall Effects
title_full_unstemmed Computational Role of Polymer-Based Ternary Hybrid Nanofluid Between Convergent/Divergent Channels With Radiation and Stretchable/Shrinkable Wall Effects
title_short Computational Role of Polymer-Based Ternary Hybrid Nanofluid Between Convergent/Divergent Channels With Radiation and Stretchable/Shrinkable Wall Effects
title_sort computational role of polymer based ternary hybrid nanofluid between convergent divergent channels with radiation and stretchable shrinkable wall effects
url http://dx.doi.org/10.1155/jom/6613165
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