Experimental Investigation for The Flow Induced Vibration for Pipe Inside Water

Forced vibration has been experimentally investigated on a model consists of circular pipe with1.6m length. The pipe built in tank (1.2m length, 0.6m height and 0.6m width) horizontally at 0.4m height with two different diameters d=15mm and d=35mm. The pipe conveying laminar flow in the fully develo...

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Main Authors: Ansam Adel Mohammed, Haitham Mohsin Salman
Format: Article
Language:English
Published: Al-Nahrain Journal for Engineering Sciences 2020-03-01
Series:مجلة النهرين للعلوم الهندسية
Subjects:
Online Access:https://nahje.com/index.php/main/article/view/727
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spelling doaj-976366c250c9473ab7c0b1eff75e576b2020-11-25T02:25:24ZengAl-Nahrain Journal for Engineering Sciencesمجلة النهرين للعلوم الهندسية2521-91542521-91622020-03-01231616710.29194/NJES.23010061727Experimental Investigation for The Flow Induced Vibration for Pipe Inside WaterAnsam Adel Mohammed0Haitham Mohsin Salman1College of Engineering, Al-Nahrain UniversityMechanical Department, Al-Nahrian University, Baghdad, Iraq.Forced vibration has been experimentally investigated on a model consists of circular pipe with1.6m length. The pipe built in tank (1.2m length, 0.6m height and 0.6m width) horizontally at 0.4m height with two different diameters d=15mm and d=35mm. The pipe conveying laminar flow in the fully developed region, of Reynolds number equals 2000. The experimental results of span pipe conveying water at five stations of forced excitation vibration were studied. The harmonic forced vibration with two different excitation frequencies (10 Hz and 15 Hz) are imposed at all of the five locations. The distance between two stations is (0.2m). Two conditions of pipe environment have been applied, the first in air and the other was immersed in water. It is concluded that the effect of flow induced vibration due to the pipe conveying fluid increases the maximum deflection when the fluid speed increases. The water surrounds the pipes reduce the effect of excitation vibration about (33 – 46%). The effect difference between the excitation frequencies was about (4 – 7%).https://nahje.com/index.php/main/article/view/727flow induced vibrationfully developedlaminar
collection DOAJ
language English
format Article
sources DOAJ
author Ansam Adel Mohammed
Haitham Mohsin Salman
spellingShingle Ansam Adel Mohammed
Haitham Mohsin Salman
Experimental Investigation for The Flow Induced Vibration for Pipe Inside Water
مجلة النهرين للعلوم الهندسية
flow induced vibration
fully developed
laminar
author_facet Ansam Adel Mohammed
Haitham Mohsin Salman
author_sort Ansam Adel Mohammed
title Experimental Investigation for The Flow Induced Vibration for Pipe Inside Water
title_short Experimental Investigation for The Flow Induced Vibration for Pipe Inside Water
title_full Experimental Investigation for The Flow Induced Vibration for Pipe Inside Water
title_fullStr Experimental Investigation for The Flow Induced Vibration for Pipe Inside Water
title_full_unstemmed Experimental Investigation for The Flow Induced Vibration for Pipe Inside Water
title_sort experimental investigation for the flow induced vibration for pipe inside water
publisher Al-Nahrain Journal for Engineering Sciences
series مجلة النهرين للعلوم الهندسية
issn 2521-9154
2521-9162
publishDate 2020-03-01
description Forced vibration has been experimentally investigated on a model consists of circular pipe with1.6m length. The pipe built in tank (1.2m length, 0.6m height and 0.6m width) horizontally at 0.4m height with two different diameters d=15mm and d=35mm. The pipe conveying laminar flow in the fully developed region, of Reynolds number equals 2000. The experimental results of span pipe conveying water at five stations of forced excitation vibration were studied. The harmonic forced vibration with two different excitation frequencies (10 Hz and 15 Hz) are imposed at all of the five locations. The distance between two stations is (0.2m). Two conditions of pipe environment have been applied, the first in air and the other was immersed in water. It is concluded that the effect of flow induced vibration due to the pipe conveying fluid increases the maximum deflection when the fluid speed increases. The water surrounds the pipes reduce the effect of excitation vibration about (33 – 46%). The effect difference between the excitation frequencies was about (4 – 7%).
topic flow induced vibration
fully developed
laminar
url https://nahje.com/index.php/main/article/view/727
work_keys_str_mv AT ansamadelmohammed experimentalinvestigationfortheflowinducedvibrationforpipeinsidewater
AT haithammohsinsalman experimentalinvestigationfortheflowinducedvibrationforpipeinsidewater
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