Dusty casson fluid flow containing single-wall carbon nanotubes with aligned magnetic field effect over a stretching sheet

Two-phase flow is the mutual interaction between solid and fluid phases which encountered in real life applications, such as sedimentation, blood flow, water pollution, fluidized bed and to name a few. In the theoretical study, this binary mixture is represented by partial differential equations tha...

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Main Authors: Nur Syamilah, Arifin, Abdul Rahman, Mohd Kasim, Syazwani, Mohd Zokri, Siti Farah, Haryatie, Mohd Zuki, Salleh
Format: Article
Language:English
Published: Penerbit Akademia Baru 2023
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/38208/
http://umpir.ump.edu.my/id/eprint/38208/1/Dusty%20casson%20fluid%20flow%20containing%20single-wall%20carbon%20nanotubes%20with%20aligned%20magnetic%20field%20effect.pdf
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author Nur Syamilah, Arifin
Abdul Rahman, Mohd Kasim
Syazwani, Mohd Zokri
Siti Farah, Haryatie
Mohd Zuki, Salleh
author_facet Nur Syamilah, Arifin
Abdul Rahman, Mohd Kasim
Syazwani, Mohd Zokri
Siti Farah, Haryatie
Mohd Zuki, Salleh
author_sort Nur Syamilah, Arifin
building UMP Institutional Repository
collection Online Access
description Two-phase flow is the mutual interaction between solid and fluid phases which encountered in real life applications, such as sedimentation, blood flow, water pollution, fluidized bed and to name a few. In the theoretical study, this binary mixture is represented by partial differential equations that denotes its physical properties of all phases. Therefore, the interaction between three important elements over a stretching sheet is examined in this study where the focus is on Casson fluid, single-wall carbon nanotubes (SWCNTs) and dust particles. Moreover, the aligned magnetic field effect and Newtonian heating (NH) are associate together to influence the flow region. In order to generate the results, the equations that governed the current model must therefore employ the similarity variables to produce the ordinary differential equations. Formulation of the problem is then continued by solving the resulting equations using Runge-Kutta Fehlberg (RKF45) method. Significant outputs for considered parameters are presented through graph. It is found that, the growing effect of fluid-particle interaction particle decreases the fluid phase distribution which contributes to the opposite trend in dust phase.
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format Article
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institution Universiti Malaysia Pahang
institution_category Local University
language English
last_indexed 2025-11-15T03:29:06Z
publishDate 2023
publisher Penerbit Akademia Baru
recordtype eprints
repository_type Digital Repository
spelling ump-382082023-09-05T03:32:05Z http://umpir.ump.edu.my/id/eprint/38208/ Dusty casson fluid flow containing single-wall carbon nanotubes with aligned magnetic field effect over a stretching sheet Nur Syamilah, Arifin Abdul Rahman, Mohd Kasim Syazwani, Mohd Zokri Siti Farah, Haryatie Mohd Zuki, Salleh Q Science (General) QA Mathematics Two-phase flow is the mutual interaction between solid and fluid phases which encountered in real life applications, such as sedimentation, blood flow, water pollution, fluidized bed and to name a few. In the theoretical study, this binary mixture is represented by partial differential equations that denotes its physical properties of all phases. Therefore, the interaction between three important elements over a stretching sheet is examined in this study where the focus is on Casson fluid, single-wall carbon nanotubes (SWCNTs) and dust particles. Moreover, the aligned magnetic field effect and Newtonian heating (NH) are associate together to influence the flow region. In order to generate the results, the equations that governed the current model must therefore employ the similarity variables to produce the ordinary differential equations. Formulation of the problem is then continued by solving the resulting equations using Runge-Kutta Fehlberg (RKF45) method. Significant outputs for considered parameters are presented through graph. It is found that, the growing effect of fluid-particle interaction particle decreases the fluid phase distribution which contributes to the opposite trend in dust phase. Penerbit Akademia Baru 2023-01 Article PeerReviewed pdf en cc_by_nc_4 http://umpir.ump.edu.my/id/eprint/38208/1/Dusty%20casson%20fluid%20flow%20containing%20single-wall%20carbon%20nanotubes%20with%20aligned%20magnetic%20field%20effect.pdf Nur Syamilah, Arifin and Abdul Rahman, Mohd Kasim and Syazwani, Mohd Zokri and Siti Farah, Haryatie and Mohd Zuki, Salleh (2023) Dusty casson fluid flow containing single-wall carbon nanotubes with aligned magnetic field effect over a stretching sheet. CFD Letters, 15 (1). pp. 17-25. ISSN 2180-1363. (Published) https://doi.org/10.37934/cfdl.15.1.1725 https://doi.org/10.37934/cfdl.15.1.1725
spellingShingle Q Science (General)
QA Mathematics
Nur Syamilah, Arifin
Abdul Rahman, Mohd Kasim
Syazwani, Mohd Zokri
Siti Farah, Haryatie
Mohd Zuki, Salleh
Dusty casson fluid flow containing single-wall carbon nanotubes with aligned magnetic field effect over a stretching sheet
title Dusty casson fluid flow containing single-wall carbon nanotubes with aligned magnetic field effect over a stretching sheet
title_full Dusty casson fluid flow containing single-wall carbon nanotubes with aligned magnetic field effect over a stretching sheet
title_fullStr Dusty casson fluid flow containing single-wall carbon nanotubes with aligned magnetic field effect over a stretching sheet
title_full_unstemmed Dusty casson fluid flow containing single-wall carbon nanotubes with aligned magnetic field effect over a stretching sheet
title_short Dusty casson fluid flow containing single-wall carbon nanotubes with aligned magnetic field effect over a stretching sheet
title_sort dusty casson fluid flow containing single-wall carbon nanotubes with aligned magnetic field effect over a stretching sheet
topic Q Science (General)
QA Mathematics
url http://umpir.ump.edu.my/id/eprint/38208/
http://umpir.ump.edu.my/id/eprint/38208/
http://umpir.ump.edu.my/id/eprint/38208/
http://umpir.ump.edu.my/id/eprint/38208/1/Dusty%20casson%20fluid%20flow%20containing%20single-wall%20carbon%20nanotubes%20with%20aligned%20magnetic%20field%20effect.pdf