Buckling Strength of Corroded Pipelines with Interacting Corrosion Defects: Numerical Analysis

Pipelines in the oil and gas industry are prone to extensive internal corrosion which leads to premature failures. Furthermore, corrosion defects within certain proximity interact to reduce the overall strength of a pipe and are termed as interacting corrosion defects. Pipelines may also experience...

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Main Authors: Kuppusamy, C.S., Karuppanan, S., Patil, S.S.
Format: Article
Published: World Scientific Publishing Co. Pte Ltd 2016
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84949497581&doi=10.1142%2fS0219455415500637&partnerID=40&md5=3eef3d837fdc0e6bbd890d532325ebed
http://eprints.utp.edu.my/25701/
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spelling my.utp.eprints.257012021-08-27T09:40:58Z Buckling Strength of Corroded Pipelines with Interacting Corrosion Defects: Numerical Analysis Kuppusamy, C.S. Karuppanan, S. Patil, S.S. Pipelines in the oil and gas industry are prone to extensive internal corrosion which leads to premature failures. Furthermore, corrosion defects within certain proximity interact to reduce the overall strength of a pipe and are termed as interacting corrosion defects. Pipelines may also experience complex loadings due to geotechnical movements such as landslides and internal pressure. Therefore, an understanding of the behavior of corroded pipelines under multiple loadings is important for the safe operation of pipelines. Extensive literature review indicates that major design codes only consider the effect of interacting corrosion defects on the burst pressure of pipes, with less attention paid to the structural behavior of steel pipes under multiple loadings. Therefore, this study focuses on the effect of interacting corrosion defects of equal depth on the local buckling strength of X46 steel pipes using the finite element analysis (FEA). Results showed that the corrosion defects interact to reduce the overall buckling strength of the pipe. Furthermore, circumferentially aligned corrosion defects are more critical than axially aligned corrosion defects, due to the greater loss of material along the circumference of the pipe. Besides, the effect of interactions of corrosion defects on the buckling strength decreases as the internal pressure increases. Lastly, as the depth of the defects increases, their interactions become more severe, which can significantly reduce the overall buckling strength of the steel pipe. © 2016 World Scientific Publishing Company. World Scientific Publishing Co. Pte Ltd 2016 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-84949497581&doi=10.1142%2fS0219455415500637&partnerID=40&md5=3eef3d837fdc0e6bbd890d532325ebed Kuppusamy, C.S. and Karuppanan, S. and Patil, S.S. (2016) Buckling Strength of Corroded Pipelines with Interacting Corrosion Defects: Numerical Analysis. International Journal of Structural Stability and Dynamics, 16 (9). http://eprints.utp.edu.my/25701/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description Pipelines in the oil and gas industry are prone to extensive internal corrosion which leads to premature failures. Furthermore, corrosion defects within certain proximity interact to reduce the overall strength of a pipe and are termed as interacting corrosion defects. Pipelines may also experience complex loadings due to geotechnical movements such as landslides and internal pressure. Therefore, an understanding of the behavior of corroded pipelines under multiple loadings is important for the safe operation of pipelines. Extensive literature review indicates that major design codes only consider the effect of interacting corrosion defects on the burst pressure of pipes, with less attention paid to the structural behavior of steel pipes under multiple loadings. Therefore, this study focuses on the effect of interacting corrosion defects of equal depth on the local buckling strength of X46 steel pipes using the finite element analysis (FEA). Results showed that the corrosion defects interact to reduce the overall buckling strength of the pipe. Furthermore, circumferentially aligned corrosion defects are more critical than axially aligned corrosion defects, due to the greater loss of material along the circumference of the pipe. Besides, the effect of interactions of corrosion defects on the buckling strength decreases as the internal pressure increases. Lastly, as the depth of the defects increases, their interactions become more severe, which can significantly reduce the overall buckling strength of the steel pipe. © 2016 World Scientific Publishing Company.
format Article
author Kuppusamy, C.S.
Karuppanan, S.
Patil, S.S.
spellingShingle Kuppusamy, C.S.
Karuppanan, S.
Patil, S.S.
Buckling Strength of Corroded Pipelines with Interacting Corrosion Defects: Numerical Analysis
author_facet Kuppusamy, C.S.
Karuppanan, S.
Patil, S.S.
author_sort Kuppusamy, C.S.
title Buckling Strength of Corroded Pipelines with Interacting Corrosion Defects: Numerical Analysis
title_short Buckling Strength of Corroded Pipelines with Interacting Corrosion Defects: Numerical Analysis
title_full Buckling Strength of Corroded Pipelines with Interacting Corrosion Defects: Numerical Analysis
title_fullStr Buckling Strength of Corroded Pipelines with Interacting Corrosion Defects: Numerical Analysis
title_full_unstemmed Buckling Strength of Corroded Pipelines with Interacting Corrosion Defects: Numerical Analysis
title_sort buckling strength of corroded pipelines with interacting corrosion defects: numerical analysis
publisher World Scientific Publishing Co. Pte Ltd
publishDate 2016
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84949497581&doi=10.1142%2fS0219455415500637&partnerID=40&md5=3eef3d837fdc0e6bbd890d532325ebed
http://eprints.utp.edu.my/25701/
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score 13.160551