Steady three-dimensional MHD mixed convection couple stress flow of hybrid nanofluid with hall and ion slip effect

The heat transfer ratio has some important applications in industries and the engineering sector. In this model, the authors used the hybrid nanofluid because the heat transfer ratio of hybrid nanofluid is more as compared to the base fluid; the key objective of this research work is to boost up the...

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Main Authors: Ali Rehman, Waris Khan, Ebenezer Bonyah, Samsul Ariffin Abdul Karim, Ahmed Alshehri, Ahmed M. Galal
Format: Article
Language:English
English
Published: Hindawi Publishing Corporation 2022
Subjects:
Online Access:https://eprints.ums.edu.my/id/eprint/35083/1/ABSTRACT.pdf
https://eprints.ums.edu.my/id/eprint/35083/2/FULLTEXT.pdf
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author Ali Rehman
Waris Khan
Ebenezer Bonyah
Samsul Ariffin Abdul Karim
Ahmed Alshehri
Ahmed M. Galal
author_facet Ali Rehman
Waris Khan
Ebenezer Bonyah
Samsul Ariffin Abdul Karim
Ahmed Alshehri
Ahmed M. Galal
author_sort Ali Rehman
collection UMS
description The heat transfer ratio has some important applications in industries and the engineering sector. In this model, the authors used the hybrid nanofluid because the heat transfer ratio of hybrid nanofluid is more as compared to the base fluid; the key objective of this research work is to boost up the heat transfer ratio, for example, to regulate the energy is possible only by adding the heat transmission mechanism in the flow model. The current research paper investigates the steady 3D MHD mixed convection couple stress flow of hybrid nanofluid with hall and ion slip effect. The objective of the current research work is to increase the heat consignment ratio, which is the demand of the manufacturing and engineering sector, this type of flow has some important applications in the industries sector and engineering sector for the purpose of cooling and hotness effect, also hotness and cooling play some important role in daily life. To transform the nonlinear partial differential equation to a nonlinear ordinary differential equation we used the defined similarity transformation. The transform nonlinear ordinary differential equations are solved by an approximate analytical method. The important obtained results are presented in the graphs. The influence of different parameters such as couple stress parameter, mixed convection parameter, nanoparticle volume friction, Hall parameter, magnetic field parameter, thermophores parameter, Eckert number, and prandtl number are taken over graphs. The Сƒ(skin friction coefficient), N u (nusselt number), convergence control parameter, and comparison of the present work with the published work are described in the form of tables.
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spelling ums.eprints-350832023-02-13T07:19:07Z https://eprints.ums.edu.my/id/eprint/35083/ Steady three-dimensional MHD mixed convection couple stress flow of hybrid nanofluid with hall and ion slip effect Ali Rehman Waris Khan Ebenezer Bonyah Samsul Ariffin Abdul Karim Ahmed Alshehri Ahmed M. Galal QA1-939 Mathematics The heat transfer ratio has some important applications in industries and the engineering sector. In this model, the authors used the hybrid nanofluid because the heat transfer ratio of hybrid nanofluid is more as compared to the base fluid; the key objective of this research work is to boost up the heat transfer ratio, for example, to regulate the energy is possible only by adding the heat transmission mechanism in the flow model. The current research paper investigates the steady 3D MHD mixed convection couple stress flow of hybrid nanofluid with hall and ion slip effect. The objective of the current research work is to increase the heat consignment ratio, which is the demand of the manufacturing and engineering sector, this type of flow has some important applications in the industries sector and engineering sector for the purpose of cooling and hotness effect, also hotness and cooling play some important role in daily life. To transform the nonlinear partial differential equation to a nonlinear ordinary differential equation we used the defined similarity transformation. The transform nonlinear ordinary differential equations are solved by an approximate analytical method. The important obtained results are presented in the graphs. The influence of different parameters such as couple stress parameter, mixed convection parameter, nanoparticle volume friction, Hall parameter, magnetic field parameter, thermophores parameter, Eckert number, and prandtl number are taken over graphs. The Сƒ(skin friction coefficient), N u (nusselt number), convergence control parameter, and comparison of the present work with the published work are described in the form of tables. Hindawi Publishing Corporation 2022-10-13 Article PeerReviewed text en https://eprints.ums.edu.my/id/eprint/35083/1/ABSTRACT.pdf text en https://eprints.ums.edu.my/id/eprint/35083/2/FULLTEXT.pdf Ali Rehman and Waris Khan and Ebenezer Bonyah and Samsul Ariffin Abdul Karim and Ahmed Alshehri and Ahmed M. Galal (2022) Steady three-dimensional MHD mixed convection couple stress flow of hybrid nanofluid with hall and ion slip effect. Advances in Civil Engineering, 2022. pp. 1-11. ISSN 1687-8086 https://www.hindawi.com/journals/ace/2022/9193875/ https://doi.org/10.1155/2022/9193875 https://doi.org/10.1155/2022/9193875
spellingShingle QA1-939 Mathematics
Ali Rehman
Waris Khan
Ebenezer Bonyah
Samsul Ariffin Abdul Karim
Ahmed Alshehri
Ahmed M. Galal
Steady three-dimensional MHD mixed convection couple stress flow of hybrid nanofluid with hall and ion slip effect
title Steady three-dimensional MHD mixed convection couple stress flow of hybrid nanofluid with hall and ion slip effect
title_full Steady three-dimensional MHD mixed convection couple stress flow of hybrid nanofluid with hall and ion slip effect
title_fullStr Steady three-dimensional MHD mixed convection couple stress flow of hybrid nanofluid with hall and ion slip effect
title_full_unstemmed Steady three-dimensional MHD mixed convection couple stress flow of hybrid nanofluid with hall and ion slip effect
title_short Steady three-dimensional MHD mixed convection couple stress flow of hybrid nanofluid with hall and ion slip effect
title_sort steady three dimensional mhd mixed convection couple stress flow of hybrid nanofluid with hall and ion slip effect
topic QA1-939 Mathematics
url https://eprints.ums.edu.my/id/eprint/35083/1/ABSTRACT.pdf
https://eprints.ums.edu.my/id/eprint/35083/2/FULLTEXT.pdf
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