Effect of Fin Geometry on Flow-Induced Vibration Response of a Finned Tube in a Tube Bundle

An experimental study is carried out on a parallel triangular finned tube array with P/Deff ratio 1.62 to examine the effect of fin geometry on flow-induced vibration response. Fins on a tube increase the heat transfer rate but these also affect the fluid dynamics around the tube. The flow pattern a...

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Main Authors: H. Arshad, S. Khushnood, L. Ahmad Nizam, M. Ameer Ahsan, O. Ghufran Bhatti
Format: Article
Language:English
Published: Isfahan University of Technology 2018-01-01
Series:Journal of Applied Fluid Mechanics
Subjects:
Online Access:http://jafmonline.net/JournalArchive/download?file_ID=45829&issue_ID=249
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spelling doaj-9d74e5c29ae344a5a7366d4c428e4c632020-11-25T00:22:24ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722018-01-0111411431152.Effect of Fin Geometry on Flow-Induced Vibration Response of a Finned Tube in a Tube BundleH. Arshad0S. Khushnood1L. Ahmad Nizam2M. Ameer Ahsan3O. Ghufran Bhatti4Department of Mechanical and Aeronautical Engineering, University of Engineering and Technology (UETDepartment of Mechanical and Aeronautical Engineering, University of Engineering and Technology (UET), Taxila, 47080, PakistanDepartment of Mechanical and Aeronautical Engineering, University of Engineering and Technology (UET), Taxila, 47080, PakistanDepartment of Mechanical and Aeronautical Engineering, University of Engineering and Technology (UET), Taxila, 47080, PakistanDepartment of Mechanical and Aeronautical Engineering, University of Engineering and Technology (UET), Taxila, 47080, PakistanAn experimental study is carried out on a parallel triangular finned tube array with P/Deff ratio 1.62 to examine the effect of fin geometry on flow-induced vibration response. Fins on a tube increase the heat transfer rate but these also affect the fluid dynamics around the tube. The flow pattern across the finned tubes is complex as compared to bare tube arrays. There are numerous parameters that affect the finned tube vibration subjected to air cross-flow in a tube array. In the current study, some of these parameters i.e. fin thickness and fin density are focused and their effects on flow-induced vibration response are analyzed in different rows of fin tube array. The current experimentation is performed in a subsonic wind tunnel using a single flexible Aluminum finned tube in a rigid array. Seven tubes with similar specifications but distinct fin thickness and fin density are used for the testing purpose. Their amplitude response suggests that the flow-induced vibration behavior is greatly affected by changing the finned tube parameters. It has also been observed during spectral analysis that the Strouhal number is independent of fin geometry since it remained constant in different rows of the array for finned tubes under study. It suggests that the vortex shedding has also contributed towards the finned tube vibration predominantly in the first, second and the fourth row of tube array.http://jafmonline.net/JournalArchive/download?file_ID=45829&issue_ID=249Finned tube bundle; Flexible tube; Mass ratio; Fin geometry; Parallel triangular
collection DOAJ
language English
format Article
sources DOAJ
author H. Arshad
S. Khushnood
L. Ahmad Nizam
M. Ameer Ahsan
O. Ghufran Bhatti
spellingShingle H. Arshad
S. Khushnood
L. Ahmad Nizam
M. Ameer Ahsan
O. Ghufran Bhatti
Effect of Fin Geometry on Flow-Induced Vibration Response of a Finned Tube in a Tube Bundle
Journal of Applied Fluid Mechanics
Finned tube bundle; Flexible tube; Mass ratio; Fin geometry; Parallel triangular
author_facet H. Arshad
S. Khushnood
L. Ahmad Nizam
M. Ameer Ahsan
O. Ghufran Bhatti
author_sort H. Arshad
title Effect of Fin Geometry on Flow-Induced Vibration Response of a Finned Tube in a Tube Bundle
title_short Effect of Fin Geometry on Flow-Induced Vibration Response of a Finned Tube in a Tube Bundle
title_full Effect of Fin Geometry on Flow-Induced Vibration Response of a Finned Tube in a Tube Bundle
title_fullStr Effect of Fin Geometry on Flow-Induced Vibration Response of a Finned Tube in a Tube Bundle
title_full_unstemmed Effect of Fin Geometry on Flow-Induced Vibration Response of a Finned Tube in a Tube Bundle
title_sort effect of fin geometry on flow-induced vibration response of a finned tube in a tube bundle
publisher Isfahan University of Technology
series Journal of Applied Fluid Mechanics
issn 1735-3572
publishDate 2018-01-01
description An experimental study is carried out on a parallel triangular finned tube array with P/Deff ratio 1.62 to examine the effect of fin geometry on flow-induced vibration response. Fins on a tube increase the heat transfer rate but these also affect the fluid dynamics around the tube. The flow pattern across the finned tubes is complex as compared to bare tube arrays. There are numerous parameters that affect the finned tube vibration subjected to air cross-flow in a tube array. In the current study, some of these parameters i.e. fin thickness and fin density are focused and their effects on flow-induced vibration response are analyzed in different rows of fin tube array. The current experimentation is performed in a subsonic wind tunnel using a single flexible Aluminum finned tube in a rigid array. Seven tubes with similar specifications but distinct fin thickness and fin density are used for the testing purpose. Their amplitude response suggests that the flow-induced vibration behavior is greatly affected by changing the finned tube parameters. It has also been observed during spectral analysis that the Strouhal number is independent of fin geometry since it remained constant in different rows of the array for finned tubes under study. It suggests that the vortex shedding has also contributed towards the finned tube vibration predominantly in the first, second and the fourth row of tube array.
topic Finned tube bundle; Flexible tube; Mass ratio; Fin geometry; Parallel triangular
url http://jafmonline.net/JournalArchive/download?file_ID=45829&issue_ID=249
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