Cilia flow of magnetized Eyring-Powell nanofluid in a vertical thermal channel with viscous dissipation: An application of Adomian decomposition method
In this study, authors explore how magnetic fields and the buoyancy force resulting from temperature differences work together. The study is focusing at how an Eyring-Powell nanofluid behaves in a ciliated channel when both natural convection and magnetic effects are at play. A technique called the...
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Elsevier
2024-05-01
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Series: | Ain Shams Engineering Journal |
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Online Access: | http://www.sciencedirect.com/science/article/pii/S2090447924000741 |
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author | F.M. Allehiany Arshad Riaz Wafa F. Alfwzan Sobia Shaheen Taseer Muhammad |
author_facet | F.M. Allehiany Arshad Riaz Wafa F. Alfwzan Sobia Shaheen Taseer Muhammad |
author_sort | F.M. Allehiany |
collection | DOAJ |
description | In this study, authors explore how magnetic fields and the buoyancy force resulting from temperature differences work together. The study is focusing at how an Eyring-Powell nanofluid behaves in a ciliated channel when both natural convection and magnetic effects are at play. A technique called the symplectic metachoronal wave has been used to analyze this analysis. A physical assumption of small Reynolds number is considered to simplify the equations describing the flow rate of the Eyring-Powell nanofluid, making it easier to understand. To get a closed form solution, we have incorporated Adomian decomposition method (ADM). It has been observed that the flow is sped up by 10% with increase in the Eyring-Powell fluid parameter M. The quantity of heat transfer increases with increasing values of the Hartmann, Eyring-Powell fluid parameters, and Brinkmann numbers. This study has implications for bio-inspired engineering, medical applications, and the design of microfluidic devices. |
first_indexed | 2024-04-24T17:29:52Z |
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id | doaj.art-e0eebd7709ce48f983aa3b85dfc5607b |
institution | Directory Open Access Journal |
issn | 2090-4479 |
language | English |
last_indexed | 2024-04-24T17:29:52Z |
publishDate | 2024-05-01 |
publisher | Elsevier |
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series | Ain Shams Engineering Journal |
spelling | doaj.art-e0eebd7709ce48f983aa3b85dfc5607b2024-03-28T06:37:41ZengElsevierAin Shams Engineering Journal2090-44792024-05-01155102699Cilia flow of magnetized Eyring-Powell nanofluid in a vertical thermal channel with viscous dissipation: An application of Adomian decomposition methodF.M. Allehiany0Arshad Riaz1Wafa F. Alfwzan2Sobia Shaheen3Taseer Muhammad4Mathematics Department, Faculty of Sciences, Umm Al-Qura University, Mecca, Saudi ArabiaDepartment of Mathematics, Division of Science and Technology, University of Education, Lahore 54770, Pakistan; Corresponding author.Department of Mathematical Sciences, College of Science, Princess Nourah bint Abdulrahman, University, P.O. Box 84428, Riyadh 11671, Saudi ArabiaDepartment of Mathematics, Division of Science and Technology, University of Education, Lahore 54770, PakistanDepartment of Mathematics, College of Science, King Khalid University, Abha 61413, Saudi ArabiaIn this study, authors explore how magnetic fields and the buoyancy force resulting from temperature differences work together. The study is focusing at how an Eyring-Powell nanofluid behaves in a ciliated channel when both natural convection and magnetic effects are at play. A technique called the symplectic metachoronal wave has been used to analyze this analysis. A physical assumption of small Reynolds number is considered to simplify the equations describing the flow rate of the Eyring-Powell nanofluid, making it easier to understand. To get a closed form solution, we have incorporated Adomian decomposition method (ADM). It has been observed that the flow is sped up by 10% with increase in the Eyring-Powell fluid parameter M. The quantity of heat transfer increases with increasing values of the Hartmann, Eyring-Powell fluid parameters, and Brinkmann numbers. This study has implications for bio-inspired engineering, medical applications, and the design of microfluidic devices.http://www.sciencedirect.com/science/article/pii/S2090447924000741Cilia flowEyring-powell modelNanofluidMagnetohydrodynamicsViscous dissipationADM |
spellingShingle | F.M. Allehiany Arshad Riaz Wafa F. Alfwzan Sobia Shaheen Taseer Muhammad Cilia flow of magnetized Eyring-Powell nanofluid in a vertical thermal channel with viscous dissipation: An application of Adomian decomposition method Ain Shams Engineering Journal Cilia flow Eyring-powell model Nanofluid Magnetohydrodynamics Viscous dissipation ADM |
title | Cilia flow of magnetized Eyring-Powell nanofluid in a vertical thermal channel with viscous dissipation: An application of Adomian decomposition method |
title_full | Cilia flow of magnetized Eyring-Powell nanofluid in a vertical thermal channel with viscous dissipation: An application of Adomian decomposition method |
title_fullStr | Cilia flow of magnetized Eyring-Powell nanofluid in a vertical thermal channel with viscous dissipation: An application of Adomian decomposition method |
title_full_unstemmed | Cilia flow of magnetized Eyring-Powell nanofluid in a vertical thermal channel with viscous dissipation: An application of Adomian decomposition method |
title_short | Cilia flow of magnetized Eyring-Powell nanofluid in a vertical thermal channel with viscous dissipation: An application of Adomian decomposition method |
title_sort | cilia flow of magnetized eyring powell nanofluid in a vertical thermal channel with viscous dissipation an application of adomian decomposition method |
topic | Cilia flow Eyring-powell model Nanofluid Magnetohydrodynamics Viscous dissipation ADM |
url | http://www.sciencedirect.com/science/article/pii/S2090447924000741 |
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