JOULE HEATING, THERMAL RADIATION AND SLIP EFFECTS ON MAGNETOHYDRODYNAMIC FLOW AND HEAT TRANSFER OVER AN EXPONENTIALLY STRETCHING/SHRINKING SHEET IN FERROFLUIDS

This research was carried out to study the constant bi-dimensional (2D) MHD flow and thermal energy exchange of ferrofluids with respect to an exponentially stretched or shrunk sheet, as well as the influences of slip, thermal radiation, and Joule heating. Before numerical analysis using the shootin...

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Published in:Journal of Sustainability Science and Management
Main Author: Ramli N.; Shafri A.S.M.; Rosly N.S.
Format: Article
Language:English
Published: Universiti Malaysia Terengganu 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85211975033&doi=10.46754%2fjssm.2024.12.004&partnerID=40&md5=6844655733490c9e87c25da0eb83850f
id 2-s2.0-85211975033
spelling 2-s2.0-85211975033
Ramli N.; Shafri A.S.M.; Rosly N.S.
JOULE HEATING, THERMAL RADIATION AND SLIP EFFECTS ON MAGNETOHYDRODYNAMIC FLOW AND HEAT TRANSFER OVER AN EXPONENTIALLY STRETCHING/SHRINKING SHEET IN FERROFLUIDS
2024
Journal of Sustainability Science and Management
19
12
10.46754/jssm.2024.12.004
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85211975033&doi=10.46754%2fjssm.2024.12.004&partnerID=40&md5=6844655733490c9e87c25da0eb83850f
This research was carried out to study the constant bi-dimensional (2D) MHD flow and thermal energy exchange of ferrofluids with respect to an exponentially stretched or shrunk sheet, as well as the influences of slip, thermal radiation, and Joule heating. Before numerical analysis using the shooting technique, the translation of the governing (or principal) partial equations to the group of non-linear ordinary differential equations using a similarity transformation was performed. By using graphs and tables, the significances of several relevant parameters (i.e., radiation, magnetic, mass transmission, slip, and stretching or shrinking variables with the Eckert number) on Nusselt number, temperature profile, and velocity, as well as the common coefficient of skin friction were examined. Non-unique or dual solutions were encountered in the value range of practised parameters for stretching and shrinking. The results proved that the increment of the magnetic, radiation, mass transfer (suction), slip parameters, and Eckert number will accelerate the heat transfer rate. © UMT Press
Universiti Malaysia Terengganu
18238556
English
Article

author Ramli N.; Shafri A.S.M.; Rosly N.S.
spellingShingle Ramli N.; Shafri A.S.M.; Rosly N.S.
JOULE HEATING, THERMAL RADIATION AND SLIP EFFECTS ON MAGNETOHYDRODYNAMIC FLOW AND HEAT TRANSFER OVER AN EXPONENTIALLY STRETCHING/SHRINKING SHEET IN FERROFLUIDS
author_facet Ramli N.; Shafri A.S.M.; Rosly N.S.
author_sort Ramli N.; Shafri A.S.M.; Rosly N.S.
title JOULE HEATING, THERMAL RADIATION AND SLIP EFFECTS ON MAGNETOHYDRODYNAMIC FLOW AND HEAT TRANSFER OVER AN EXPONENTIALLY STRETCHING/SHRINKING SHEET IN FERROFLUIDS
title_short JOULE HEATING, THERMAL RADIATION AND SLIP EFFECTS ON MAGNETOHYDRODYNAMIC FLOW AND HEAT TRANSFER OVER AN EXPONENTIALLY STRETCHING/SHRINKING SHEET IN FERROFLUIDS
title_full JOULE HEATING, THERMAL RADIATION AND SLIP EFFECTS ON MAGNETOHYDRODYNAMIC FLOW AND HEAT TRANSFER OVER AN EXPONENTIALLY STRETCHING/SHRINKING SHEET IN FERROFLUIDS
title_fullStr JOULE HEATING, THERMAL RADIATION AND SLIP EFFECTS ON MAGNETOHYDRODYNAMIC FLOW AND HEAT TRANSFER OVER AN EXPONENTIALLY STRETCHING/SHRINKING SHEET IN FERROFLUIDS
title_full_unstemmed JOULE HEATING, THERMAL RADIATION AND SLIP EFFECTS ON MAGNETOHYDRODYNAMIC FLOW AND HEAT TRANSFER OVER AN EXPONENTIALLY STRETCHING/SHRINKING SHEET IN FERROFLUIDS
title_sort JOULE HEATING, THERMAL RADIATION AND SLIP EFFECTS ON MAGNETOHYDRODYNAMIC FLOW AND HEAT TRANSFER OVER AN EXPONENTIALLY STRETCHING/SHRINKING SHEET IN FERROFLUIDS
publishDate 2024
container_title Journal of Sustainability Science and Management
container_volume 19
container_issue 12
doi_str_mv 10.46754/jssm.2024.12.004
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85211975033&doi=10.46754%2fjssm.2024.12.004&partnerID=40&md5=6844655733490c9e87c25da0eb83850f
description This research was carried out to study the constant bi-dimensional (2D) MHD flow and thermal energy exchange of ferrofluids with respect to an exponentially stretched or shrunk sheet, as well as the influences of slip, thermal radiation, and Joule heating. Before numerical analysis using the shooting technique, the translation of the governing (or principal) partial equations to the group of non-linear ordinary differential equations using a similarity transformation was performed. By using graphs and tables, the significances of several relevant parameters (i.e., radiation, magnetic, mass transmission, slip, and stretching or shrinking variables with the Eckert number) on Nusselt number, temperature profile, and velocity, as well as the common coefficient of skin friction were examined. Non-unique or dual solutions were encountered in the value range of practised parameters for stretching and shrinking. The results proved that the increment of the magnetic, radiation, mass transfer (suction), slip parameters, and Eckert number will accelerate the heat transfer rate. © UMT Press
publisher Universiti Malaysia Terengganu
issn 18238556
language English
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