Evaluation of Vortex Induced Vibration Effective Parameters on Free-Span Subsea Pipelines

Subsea pipelines due to the reduction of transfer costs and expedite the offshore operations is one of the all-purpose structures in marine industries. Subsea pipelines are exposed to a variety of hazards, including corrosion and fatigue Etc. Free span exacerbates the fatigue required parameters due...

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Main Authors: Seyed Mohammad Hossein Sharifi, Mahdi Tasdighi
Format: Article
Language:English
Published: Iranian Association of Naval Architecture and Marine Engineering 2019-10-01
Series:International Journal of Coastal and Offshore Engineering
Subjects:
Online Access:http://ijcoe.org/article-1-141-en.html
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spelling doaj-856a0039c94847ff96bb1eba343403db2020-11-25T03:45:57ZengIranian Association of Naval Architecture and Marine EngineeringInternational Journal of Coastal and Offshore Engineering2538-26672588-31862019-10-0133915Evaluation of Vortex Induced Vibration Effective Parameters on Free-Span Subsea PipelinesSeyed Mohammad Hossein Sharifi0Mahdi Tasdighi1 Petroleum University of Technology Petroleum University of Technology Subsea pipelines due to the reduction of transfer costs and expedite the offshore operations is one of the all-purpose structures in marine industries. Subsea pipelines are exposed to a variety of hazards, including corrosion and fatigue Etc. Free span exacerbates the fatigue required parameters due to a phenomenon called the Vortex Induced Vibration (VIV). In this research, the influence of the span's length on the free span subsea pipeline has been reviewed with ABAQUS standard code. In this study the previous result has been expanded. The results of the VIV fatigue life are extensible to all of the depth. Achieved Results indicate that the fatigue life of the pipeline even in the worst condition is much higher than the required amount that it represents the upstream design of DNV-RP-F105. In this study the backrest pipeline has been investigated and result show that the pipeline under the different conditions in the backrest, by creating more vibration and displacement on one side of the pipeline reduces the fatigue life of 113 percent compared to snap. The VIV fatigue life has undergone a lot of changes due to span length changes, maximum changes occur between cable and behavioral which the amount of these changes is reduced by 75%. The free span length is another factor in VIV fatigue. VIV fatigue life will be increased by reducing the span length. As well as increasing the flow velocity that is the main factor in creating the VIV is increased fatigue. Therefore, in terms of the accuracy in the choice of the existing conditions of very high importance for the pipeline. Comparison between effect parameters in VIV fatigue life was shown that span length is the most effective parameter.http://ijcoe.org/article-1-141-en.htmlupheaval bucklingpipelineabaqusvortex induced vibrationfree span
collection DOAJ
language English
format Article
sources DOAJ
author Seyed Mohammad Hossein Sharifi
Mahdi Tasdighi
spellingShingle Seyed Mohammad Hossein Sharifi
Mahdi Tasdighi
Evaluation of Vortex Induced Vibration Effective Parameters on Free-Span Subsea Pipelines
International Journal of Coastal and Offshore Engineering
upheaval buckling
pipeline
abaqus
vortex induced vibration
free span
author_facet Seyed Mohammad Hossein Sharifi
Mahdi Tasdighi
author_sort Seyed Mohammad Hossein Sharifi
title Evaluation of Vortex Induced Vibration Effective Parameters on Free-Span Subsea Pipelines
title_short Evaluation of Vortex Induced Vibration Effective Parameters on Free-Span Subsea Pipelines
title_full Evaluation of Vortex Induced Vibration Effective Parameters on Free-Span Subsea Pipelines
title_fullStr Evaluation of Vortex Induced Vibration Effective Parameters on Free-Span Subsea Pipelines
title_full_unstemmed Evaluation of Vortex Induced Vibration Effective Parameters on Free-Span Subsea Pipelines
title_sort evaluation of vortex induced vibration effective parameters on free-span subsea pipelines
publisher Iranian Association of Naval Architecture and Marine Engineering
series International Journal of Coastal and Offshore Engineering
issn 2538-2667
2588-3186
publishDate 2019-10-01
description Subsea pipelines due to the reduction of transfer costs and expedite the offshore operations is one of the all-purpose structures in marine industries. Subsea pipelines are exposed to a variety of hazards, including corrosion and fatigue Etc. Free span exacerbates the fatigue required parameters due to a phenomenon called the Vortex Induced Vibration (VIV). In this research, the influence of the span's length on the free span subsea pipeline has been reviewed with ABAQUS standard code. In this study the previous result has been expanded. The results of the VIV fatigue life are extensible to all of the depth. Achieved Results indicate that the fatigue life of the pipeline even in the worst condition is much higher than the required amount that it represents the upstream design of DNV-RP-F105. In this study the backrest pipeline has been investigated and result show that the pipeline under the different conditions in the backrest, by creating more vibration and displacement on one side of the pipeline reduces the fatigue life of 113 percent compared to snap. The VIV fatigue life has undergone a lot of changes due to span length changes, maximum changes occur between cable and behavioral which the amount of these changes is reduced by 75%. The free span length is another factor in VIV fatigue. VIV fatigue life will be increased by reducing the span length. As well as increasing the flow velocity that is the main factor in creating the VIV is increased fatigue. Therefore, in terms of the accuracy in the choice of the existing conditions of very high importance for the pipeline. Comparison between effect parameters in VIV fatigue life was shown that span length is the most effective parameter.
topic upheaval buckling
pipeline
abaqus
vortex induced vibration
free span
url http://ijcoe.org/article-1-141-en.html
work_keys_str_mv AT seyedmohammadhosseinsharifi evaluationofvortexinducedvibrationeffectiveparametersonfreespansubseapipelines
AT mahditasdighi evaluationofvortexinducedvibrationeffectiveparametersonfreespansubseapipelines
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