The Effect of Different Reynolds Number On Solid Sphere Using CFD and Its Verification

Aerodynamic behaviour of an object depends on several factors, namely shape, size and flow conditions. Thus, CFD simulations are an effective engineering tools that allows major contribution to understand the flow conditions around an object. This study aims to analyse the effect of two types of sph...

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Main Authors: Azahar, Mohamad Amirur Rahman, Ishak, Izuan Amin, Sulaiman, Syabillah, Jaat, Norrizam, Zulkifli, Abdul Fathul Hakim, Sukiman, Safra Liyana, Osman, Kahar, Darlis, Nofrizalidris
Format: Article
Language:English
Published: uthm 2023
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Online Access:http://eprints.uthm.edu.my/10112/1/J16237_1618e578e4c8c5a29e9eeb8bbd25a70f.pdf
http://eprints.uthm.edu.my/10112/
https://doi.org/10.30880/ijie.2023.15.01.009
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spelling my.uthm.eprints.101122023-10-17T06:59:56Z http://eprints.uthm.edu.my/10112/ The Effect of Different Reynolds Number On Solid Sphere Using CFD and Its Verification Azahar, Mohamad Amirur Rahman Ishak, Izuan Amin Sulaiman, Syabillah Jaat, Norrizam Zulkifli, Abdul Fathul Hakim Sukiman, Safra Liyana Osman, Kahar Darlis, Nofrizalidris TJ Mechanical engineering and machinery Aerodynamic behaviour of an object depends on several factors, namely shape, size and flow conditions. Thus, CFD simulations are an effective engineering tools that allows major contribution to understand the flow conditions around an object. This study aims to analyse the effect of two types of spherical models that are sphere and hemisphere on aerodynamics behaviour for different Reynolds number between 100,000 ≤ Re ≤ 800,000. Geometry models are generated using SolidWorks software and numerical solution is analysed using ANSYS CFX. The numerical results are later compared with experimental data collected from wind tunnel. At the end of the study, the nature flow around spherical models of different Reynolds number are visualized. It is discovered that the flow behaviour around the spherical model changes as the Reynolds number increases. This finding is parallel with past researchers. These forecasts should assist engineers enhance the application of aerodynamic and hydrodynamic design. uthm 2023 Article PeerReviewed text en http://eprints.uthm.edu.my/10112/1/J16237_1618e578e4c8c5a29e9eeb8bbd25a70f.pdf Azahar, Mohamad Amirur Rahman and Ishak, Izuan Amin and Sulaiman, Syabillah and Jaat, Norrizam and Zulkifli, Abdul Fathul Hakim and Sukiman, Safra Liyana and Osman, Kahar and Darlis, Nofrizalidris (2023) The Effect of Different Reynolds Number On Solid Sphere Using CFD and Its Verification. INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING, 15 (1). pp. 96-105. ISSN 2229-838X https://doi.org/10.30880/ijie.2023.15.01.009
institution Universiti Tun Hussein Onn Malaysia
building UTHM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tun Hussein Onn Malaysia
content_source UTHM Institutional Repository
url_provider http://eprints.uthm.edu.my/
language English
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Azahar, Mohamad Amirur Rahman
Ishak, Izuan Amin
Sulaiman, Syabillah
Jaat, Norrizam
Zulkifli, Abdul Fathul Hakim
Sukiman, Safra Liyana
Osman, Kahar
Darlis, Nofrizalidris
The Effect of Different Reynolds Number On Solid Sphere Using CFD and Its Verification
description Aerodynamic behaviour of an object depends on several factors, namely shape, size and flow conditions. Thus, CFD simulations are an effective engineering tools that allows major contribution to understand the flow conditions around an object. This study aims to analyse the effect of two types of spherical models that are sphere and hemisphere on aerodynamics behaviour for different Reynolds number between 100,000 ≤ Re ≤ 800,000. Geometry models are generated using SolidWorks software and numerical solution is analysed using ANSYS CFX. The numerical results are later compared with experimental data collected from wind tunnel. At the end of the study, the nature flow around spherical models of different Reynolds number are visualized. It is discovered that the flow behaviour around the spherical model changes as the Reynolds number increases. This finding is parallel with past researchers. These forecasts should assist engineers enhance the application of aerodynamic and hydrodynamic design.
format Article
author Azahar, Mohamad Amirur Rahman
Ishak, Izuan Amin
Sulaiman, Syabillah
Jaat, Norrizam
Zulkifli, Abdul Fathul Hakim
Sukiman, Safra Liyana
Osman, Kahar
Darlis, Nofrizalidris
author_facet Azahar, Mohamad Amirur Rahman
Ishak, Izuan Amin
Sulaiman, Syabillah
Jaat, Norrizam
Zulkifli, Abdul Fathul Hakim
Sukiman, Safra Liyana
Osman, Kahar
Darlis, Nofrizalidris
author_sort Azahar, Mohamad Amirur Rahman
title The Effect of Different Reynolds Number On Solid Sphere Using CFD and Its Verification
title_short The Effect of Different Reynolds Number On Solid Sphere Using CFD and Its Verification
title_full The Effect of Different Reynolds Number On Solid Sphere Using CFD and Its Verification
title_fullStr The Effect of Different Reynolds Number On Solid Sphere Using CFD and Its Verification
title_full_unstemmed The Effect of Different Reynolds Number On Solid Sphere Using CFD and Its Verification
title_sort effect of different reynolds number on solid sphere using cfd and its verification
publisher uthm
publishDate 2023
url http://eprints.uthm.edu.my/10112/1/J16237_1618e578e4c8c5a29e9eeb8bbd25a70f.pdf
http://eprints.uthm.edu.my/10112/
https://doi.org/10.30880/ijie.2023.15.01.009
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score 13.209306