Application of active nonlinear energy sink to reduce the oscillations of flow exposed circular cylinder

In this paper, passive and active vortex-induced vibration control of a circular cylinder that oscillates freely in longitudinal and transverse directions is investigated by utilization of nonlinear energy sink. The nonlinear energy sink is composed of a mass, a damping and a nonlinear spring that a...

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Main Authors: Maryam Sarmeili, Amir Hossein Rabiee, Hamid reza Rezaei Ashtiani
Format: Article
Language:fas
Published: Iranian Association of Naval Architecture and Marine Engineering 2021-05-01
Series:نشریه مهندسی دریا
Subjects:
Online Access:http://marine-eng.ir/article-1-789-en.html
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author Maryam Sarmeili
Amir Hossein Rabiee
Hamid reza Rezaei Ashtiani
author_facet Maryam Sarmeili
Amir Hossein Rabiee
Hamid reza Rezaei Ashtiani
author_sort Maryam Sarmeili
collection DOAJ
description In this paper, passive and active vortex-induced vibration control of a circular cylinder that oscillates freely in longitudinal and transverse directions is investigated by utilization of nonlinear energy sink. The nonlinear energy sink is composed of a mass, a damping and a nonlinear spring that attaches inside of vibrating cylinder. The vibrational energy of the main cylinder is transferred to the adsorbent mass, thereby reducing the cylinder oscillations. The effectiveness of the proposed control method, numerical results are presented for four Reynolds numbers located in the lock-in region, Re = 85, 90, 95, 100. According to the numerical simulations, the optimized parameters for the passive nonlinear energy sink are considered equal to ... . It can be seen that at all Reynolds numbers, active nonlinear energy sink perform better than passive energy absorbers in reducing vortex-induced vibrations.
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spelling doaj.art-b4da6214914f4eb6aa2836f87b1e75ac2022-12-21T22:37:35ZfasIranian Association of Naval Architecture and Marine Engineeringنشریه مهندسی دریا1735-76082645-81362021-05-0117332336Application of active nonlinear energy sink to reduce the oscillations of flow exposed circular cylinderMaryam Sarmeili0Amir Hossein Rabiee1Hamid reza Rezaei Ashtiani2 Arak University of Technology Arak University of Technology Arak University of Technology In this paper, passive and active vortex-induced vibration control of a circular cylinder that oscillates freely in longitudinal and transverse directions is investigated by utilization of nonlinear energy sink. The nonlinear energy sink is composed of a mass, a damping and a nonlinear spring that attaches inside of vibrating cylinder. The vibrational energy of the main cylinder is transferred to the adsorbent mass, thereby reducing the cylinder oscillations. The effectiveness of the proposed control method, numerical results are presented for four Reynolds numbers located in the lock-in region, Re = 85, 90, 95, 100. According to the numerical simulations, the optimized parameters for the passive nonlinear energy sink are considered equal to ... . It can be seen that at all Reynolds numbers, active nonlinear energy sink perform better than passive energy absorbers in reducing vortex-induced vibrations.http://marine-eng.ir/article-1-789-en.htmlnonlinear energy sinkpassive vibration controlactive vibration controlmarine structuresflow-induced vibration
spellingShingle Maryam Sarmeili
Amir Hossein Rabiee
Hamid reza Rezaei Ashtiani
Application of active nonlinear energy sink to reduce the oscillations of flow exposed circular cylinder
نشریه مهندسی دریا
nonlinear energy sink
passive vibration control
active vibration control
marine structures
flow-induced vibration
title Application of active nonlinear energy sink to reduce the oscillations of flow exposed circular cylinder
title_full Application of active nonlinear energy sink to reduce the oscillations of flow exposed circular cylinder
title_fullStr Application of active nonlinear energy sink to reduce the oscillations of flow exposed circular cylinder
title_full_unstemmed Application of active nonlinear energy sink to reduce the oscillations of flow exposed circular cylinder
title_short Application of active nonlinear energy sink to reduce the oscillations of flow exposed circular cylinder
title_sort application of active nonlinear energy sink to reduce the oscillations of flow exposed circular cylinder
topic nonlinear energy sink
passive vibration control
active vibration control
marine structures
flow-induced vibration
url http://marine-eng.ir/article-1-789-en.html
work_keys_str_mv AT maryamsarmeili applicationofactivenonlinearenergysinktoreducetheoscillationsofflowexposedcircularcylinder
AT amirhosseinrabiee applicationofactivenonlinearenergysinktoreducetheoscillationsofflowexposedcircularcylinder
AT hamidrezarezaeiashtiani applicationofactivenonlinearenergysinktoreducetheoscillationsofflowexposedcircularcylinder