Importance of Added Mass and Damping in Flow-Induced Vibration Analysis of Tubes Bundle: An Overview

Flow-induced vibration is of prime concern to the designers of heat exchangers subjected to high flows of gases or liquids. Excessive vibration may cause tube failure due to fatigue or fretting-wear. Tube failure results in, expensive plant upholding and suffers loss of production. Therefore, tube...

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Main Authors: Faisal Karim Shami, Arshad Hussain Qureshi, Muhammad Mansha
Format: Article
Language:English
Published: Mehran University of Engineering and Technology 2012-01-01
Series:Mehran University Research Journal of Engineering and Technology
Subjects:
Online Access:http://publications.muet.edu.pk/research_papers/pdf/pdf200.pdf
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author Faisal Karim Shami
Arshad Hussain Qureshi
Muhammad Mansha
author_facet Faisal Karim Shami
Arshad Hussain Qureshi
Muhammad Mansha
author_sort Faisal Karim Shami
collection DOAJ
description Flow-induced vibration is of prime concern to the designers of heat exchangers subjected to high flows of gases or liquids. Excessive vibration may cause tube failure due to fatigue or fretting-wear. Tube failure results in, expensive plant upholding and suffers loss of production. Therefore, tube failure due to unwarranted vibration must be avoided in process heat exchangers and nuclear steam generators, preferably at design stage. Such vibration problems may be avoided through a comprehensive flowinduced vibration analysis before fabrication of heat exchangers. However, it requires an understanding of vibration mechanism and parameters related to flow-induced vibration. For an accurate vibration analysis, it is of prime importance to have good estimates of structural and flow related dynamic parameters. Thus dynamic parameters such as added mass and damping are of significant concern in a flow regime. The purpose of this paper is to provide an overview of our state of knowledge and role of dynamic parameters in flow-induced vibration on tube bundles due to current trend of larger heat exchangers. The present paper provides published data, analysis, evaluation, formulation, and experimental studies related to hydrodynamic mass and damping by a large number of researchers. Guidelines for experimental research and heat exchangers design related to added mass and damping mechanisms subjected to both single and two-phase flow are outlined in this paper.
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spelling doaj.art-454d6ab6b7ee4c228ece21b17c192e4a2022-12-22T00:42:27ZengMehran University of Engineering and TechnologyMehran University Research Journal of Engineering and Technology0254-78212413-72192012-01-013112938200Importance of Added Mass and Damping in Flow-Induced Vibration Analysis of Tubes Bundle: An OverviewFaisal Karim ShamiArshad Hussain QureshiMuhammad ManshaFlow-induced vibration is of prime concern to the designers of heat exchangers subjected to high flows of gases or liquids. Excessive vibration may cause tube failure due to fatigue or fretting-wear. Tube failure results in, expensive plant upholding and suffers loss of production. Therefore, tube failure due to unwarranted vibration must be avoided in process heat exchangers and nuclear steam generators, preferably at design stage. Such vibration problems may be avoided through a comprehensive flowinduced vibration analysis before fabrication of heat exchangers. However, it requires an understanding of vibration mechanism and parameters related to flow-induced vibration. For an accurate vibration analysis, it is of prime importance to have good estimates of structural and flow related dynamic parameters. Thus dynamic parameters such as added mass and damping are of significant concern in a flow regime. The purpose of this paper is to provide an overview of our state of knowledge and role of dynamic parameters in flow-induced vibration on tube bundles due to current trend of larger heat exchangers. The present paper provides published data, analysis, evaluation, formulation, and experimental studies related to hydrodynamic mass and damping by a large number of researchers. Guidelines for experimental research and heat exchangers design related to added mass and damping mechanisms subjected to both single and two-phase flow are outlined in this paper.http://publications.muet.edu.pk/research_papers/pdf/pdf200.pdfTubes BundleFlow Induced VibrationDamping MechanismHydrodynamic Mass.
spellingShingle Faisal Karim Shami
Arshad Hussain Qureshi
Muhammad Mansha
Importance of Added Mass and Damping in Flow-Induced Vibration Analysis of Tubes Bundle: An Overview
Mehran University Research Journal of Engineering and Technology
Tubes Bundle
Flow Induced Vibration
Damping Mechanism
Hydrodynamic Mass.
title Importance of Added Mass and Damping in Flow-Induced Vibration Analysis of Tubes Bundle: An Overview
title_full Importance of Added Mass and Damping in Flow-Induced Vibration Analysis of Tubes Bundle: An Overview
title_fullStr Importance of Added Mass and Damping in Flow-Induced Vibration Analysis of Tubes Bundle: An Overview
title_full_unstemmed Importance of Added Mass and Damping in Flow-Induced Vibration Analysis of Tubes Bundle: An Overview
title_short Importance of Added Mass and Damping in Flow-Induced Vibration Analysis of Tubes Bundle: An Overview
title_sort importance of added mass and damping in flow induced vibration analysis of tubes bundle an overview
topic Tubes Bundle
Flow Induced Vibration
Damping Mechanism
Hydrodynamic Mass.
url http://publications.muet.edu.pk/research_papers/pdf/pdf200.pdf
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AT arshadhussainqureshi importanceofaddedmassanddampinginflowinducedvibrationanalysisoftubesbundleanoverview
AT muhammadmansha importanceofaddedmassanddampinginflowinducedvibrationanalysisoftubesbundleanoverview