Mitigation of Flow-Induced Vibration of Steel Catenary Risers with Pounding Tuned Mass Damper

Steel catenary risers (SCR) have been widely used in the offshore oil industry. This paper proposes using a novel vibration control device, i.e., the pounding tuned mass damper (PTMD), to mitigate the flow-induced vibration of an SCR. The numerical model of the SCR and the PTMD has been established...

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Main Authors: Peng Zhang, Haisu Wang, Jiashu Liu, Hailong Liu, Chunyi Cui
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2022/1209631
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author Peng Zhang
Haisu Wang
Jiashu Liu
Hailong Liu
Chunyi Cui
author_facet Peng Zhang
Haisu Wang
Jiashu Liu
Hailong Liu
Chunyi Cui
author_sort Peng Zhang
collection DOAJ
description Steel catenary risers (SCR) have been widely used in the offshore oil industry. This paper proposes using a novel vibration control device, i.e., the pounding tuned mass damper (PTMD), to mitigate the flow-induced vibration of an SCR. The numerical model of the SCR and the PTMD has been established in ANSYS. The soil-pipe interaction is simulated by nonlinear springs based on p-y curves. A single degree of freedom structure is utilized to verify the PTMD model established in ANSYS using APDL. Afterwards, numerical studies are carried out to validate the vibration control performance of the proposed PTMD and to investigate the influence of mass ratio and the location of the PTMD. The numerical results imply that the PTMD is very effective in reducing the displacement of the SCR under different oceanic conditions. The vibration control effectiveness will increase with the increase in mass ratio. The maximum vibration reduction is achieved when the PTMD is located at the place where the largest amount of motion takes place.
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institution DOAJ
issn 1875-9203
language English
publishDate 2022-01-01
publisher Wiley
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series Shock and Vibration
spelling doaj-art-4fe003508dae402ab296cbf55e324bf22025-08-20T03:20:19ZengWileyShock and Vibration1875-92032022-01-01202210.1155/2022/1209631Mitigation of Flow-Induced Vibration of Steel Catenary Risers with Pounding Tuned Mass DamperPeng Zhang0Haisu Wang1Jiashu Liu2Hailong Liu3Chunyi Cui4Institute of Road and Bridge EngineeringInstitute of Road and Bridge EngineeringInstitute of Road and Bridge EngineeringInstitute of Road and Bridge EngineeringInstitute of Road and Bridge EngineeringSteel catenary risers (SCR) have been widely used in the offshore oil industry. This paper proposes using a novel vibration control device, i.e., the pounding tuned mass damper (PTMD), to mitigate the flow-induced vibration of an SCR. The numerical model of the SCR and the PTMD has been established in ANSYS. The soil-pipe interaction is simulated by nonlinear springs based on p-y curves. A single degree of freedom structure is utilized to verify the PTMD model established in ANSYS using APDL. Afterwards, numerical studies are carried out to validate the vibration control performance of the proposed PTMD and to investigate the influence of mass ratio and the location of the PTMD. The numerical results imply that the PTMD is very effective in reducing the displacement of the SCR under different oceanic conditions. The vibration control effectiveness will increase with the increase in mass ratio. The maximum vibration reduction is achieved when the PTMD is located at the place where the largest amount of motion takes place.http://dx.doi.org/10.1155/2022/1209631
spellingShingle Peng Zhang
Haisu Wang
Jiashu Liu
Hailong Liu
Chunyi Cui
Mitigation of Flow-Induced Vibration of Steel Catenary Risers with Pounding Tuned Mass Damper
Shock and Vibration
title Mitigation of Flow-Induced Vibration of Steel Catenary Risers with Pounding Tuned Mass Damper
title_full Mitigation of Flow-Induced Vibration of Steel Catenary Risers with Pounding Tuned Mass Damper
title_fullStr Mitigation of Flow-Induced Vibration of Steel Catenary Risers with Pounding Tuned Mass Damper
title_full_unstemmed Mitigation of Flow-Induced Vibration of Steel Catenary Risers with Pounding Tuned Mass Damper
title_short Mitigation of Flow-Induced Vibration of Steel Catenary Risers with Pounding Tuned Mass Damper
title_sort mitigation of flow induced vibration of steel catenary risers with pounding tuned mass damper
url http://dx.doi.org/10.1155/2022/1209631
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AT jiashuliu mitigationofflowinducedvibrationofsteelcatenaryriserswithpoundingtunedmassdamper
AT hailongliu mitigationofflowinducedvibrationofsteelcatenaryriserswithpoundingtunedmassdamper
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