Buckling Mechanism of Offshore Pipelines: A State of the Art

The buckling analysis of an offshore pipeline refers to the analysis of temperature-induced uplift and lateral buckling of pipelines by analytical, numerical, and experimental means. Thus, the current study discusses different research performed on thermal pipe-buckling and the different factors aff...

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Main Authors: Debtanu Seth, Bappaditya Manna, Jagdish Telangrao Shahu, Tiago Fazeres-Ferradosa, Francisco Taveira Pinto, Paulo Jorge Rosa-Santos
Format: Article
Language:English
Published: MDPI AG 2021-10-01
Series:Journal of Marine Science and Engineering
Subjects:
Online Access:https://www.mdpi.com/2077-1312/9/10/1074
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author Debtanu Seth
Bappaditya Manna
Jagdish Telangrao Shahu
Tiago Fazeres-Ferradosa
Francisco Taveira Pinto
Paulo Jorge Rosa-Santos
author_facet Debtanu Seth
Bappaditya Manna
Jagdish Telangrao Shahu
Tiago Fazeres-Ferradosa
Francisco Taveira Pinto
Paulo Jorge Rosa-Santos
author_sort Debtanu Seth
collection DOAJ
description The buckling analysis of an offshore pipeline refers to the analysis of temperature-induced uplift and lateral buckling of pipelines by analytical, numerical, and experimental means. Thus, the current study discusses different research performed on thermal pipe-buckling and the different factors affecting the pipeline’s buckling behaviour. The current study consists of the dependency of the pipe-buckling direction on the seabed features and burial condition; the pre-buckling and post-buckling load-displacement behaviour of the pipeline; the effect of soil weight, burial depth, axial resistance, imperfection amplitude, temperature difference, interface tensile capacity, and diameter-to-thickness ratio on the uplift and lateral resistance; and the failure mechanism of the pipeline. Moreover, the effect of external hydrostatic pressure, bending moment, initial imperfection, sectional rigidity, and diameter-to-thickness ratio of the pipeline on collapse load of the pipeline during buckling were also included in the study. This work highlights the existing knowledge on the topic along with the main findings performed up to recent research. In addition, the reference literature on the topic is given and analysed to contribute to a broad perspective on buckling analysis of offshore pipelines. This work provides a starting point to identify further innovation and development guidelines for professionals and researchers dealing with offshore pipelines, which are key infrastructures for numerous maritime applications.
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spelling doaj.art-e1ad0ab6db704d0ebbe6e3249caba6c02023-11-22T18:45:06ZengMDPI AGJournal of Marine Science and Engineering2077-13122021-10-01910107410.3390/jmse9101074Buckling Mechanism of Offshore Pipelines: A State of the ArtDebtanu Seth0Bappaditya Manna1Jagdish Telangrao Shahu2Tiago Fazeres-Ferradosa3Francisco Taveira Pinto4Paulo Jorge Rosa-Santos5Department of Civil Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, IndiaDepartment of Civil Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, IndiaDepartment of Civil Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, IndiaMarine Energy Research Group, CIIMAR—Interdisciplinary Centre of Marine and Environmental Research, 4400-465 Porto, PortugalMarine Energy Research Group, CIIMAR—Interdisciplinary Centre of Marine and Environmental Research, 4400-465 Porto, PortugalMarine Energy Research Group, CIIMAR—Interdisciplinary Centre of Marine and Environmental Research, 4400-465 Porto, PortugalThe buckling analysis of an offshore pipeline refers to the analysis of temperature-induced uplift and lateral buckling of pipelines by analytical, numerical, and experimental means. Thus, the current study discusses different research performed on thermal pipe-buckling and the different factors affecting the pipeline’s buckling behaviour. The current study consists of the dependency of the pipe-buckling direction on the seabed features and burial condition; the pre-buckling and post-buckling load-displacement behaviour of the pipeline; the effect of soil weight, burial depth, axial resistance, imperfection amplitude, temperature difference, interface tensile capacity, and diameter-to-thickness ratio on the uplift and lateral resistance; and the failure mechanism of the pipeline. Moreover, the effect of external hydrostatic pressure, bending moment, initial imperfection, sectional rigidity, and diameter-to-thickness ratio of the pipeline on collapse load of the pipeline during buckling were also included in the study. This work highlights the existing knowledge on the topic along with the main findings performed up to recent research. In addition, the reference literature on the topic is given and analysed to contribute to a broad perspective on buckling analysis of offshore pipelines. This work provides a starting point to identify further innovation and development guidelines for professionals and researchers dealing with offshore pipelines, which are key infrastructures for numerous maritime applications.https://www.mdpi.com/2077-1312/9/10/1074analytical solutionaxial resistanceexperimental solutionlateral bucklingnumerical analysispipe bending
spellingShingle Debtanu Seth
Bappaditya Manna
Jagdish Telangrao Shahu
Tiago Fazeres-Ferradosa
Francisco Taveira Pinto
Paulo Jorge Rosa-Santos
Buckling Mechanism of Offshore Pipelines: A State of the Art
Journal of Marine Science and Engineering
analytical solution
axial resistance
experimental solution
lateral buckling
numerical analysis
pipe bending
title Buckling Mechanism of Offshore Pipelines: A State of the Art
title_full Buckling Mechanism of Offshore Pipelines: A State of the Art
title_fullStr Buckling Mechanism of Offshore Pipelines: A State of the Art
title_full_unstemmed Buckling Mechanism of Offshore Pipelines: A State of the Art
title_short Buckling Mechanism of Offshore Pipelines: A State of the Art
title_sort buckling mechanism of offshore pipelines a state of the art
topic analytical solution
axial resistance
experimental solution
lateral buckling
numerical analysis
pipe bending
url https://www.mdpi.com/2077-1312/9/10/1074
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