Behavior and damage of a pipe in the presence of a corrosion defect depth of 10% of its thickness and highlighting the weaknesses of the ASME / B31G method
The company DRC (pipe repair Department) located within the SONATRACH Company of oil and gas in Algeria, which is responsible for the repair of pipelines for the transport of gas or crude petroleum, will rehabilitate old pipes that have operated on-line for approximately 30 years or come from remain...
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Gruppo Italiano Frattura
2019-07-01
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Series: | Frattura ed Integrità Strutturale |
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Online Access: | https://www.fracturae.com/index.php/fis/article/view/2421/2585 |
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doaj-42f573c4de1f4d88afcdd6449ebc66852020-11-25T01:32:31ZengGruppo Italiano FratturaFrattura ed Integrità Strutturale1971-89932019-07-01134964365410.3221/IGF-ESIS.49.5810.3221/IGF-ESIS.49.58Behavior and damage of a pipe in the presence of a corrosion defect depth of 10% of its thickness and highlighting the weaknesses of the ASME / B31G methodH. BerrekiaD. BenzergaA. HaddiThe company DRC (pipe repair Department) located within the SONATRACH Company of oil and gas in Algeria, which is responsible for the repair of pipelines for the transport of gas or crude petroleum, will rehabilitate old pipes that have operated on-line for approximately 30 years or come from remaining projects. On the assumption that rehabilitating a pipeline means making it workable under the same conditions as a new structure and reducing the overall cost of the project. The abandonment of these tubes will have an important environmental and financial impact. The rehabilitation, which consists of recovering the maximum of tube, already used, therefore reduces the cost of the project. Inspection and evaluation of corrosion defects are carried out in accordance with ASME/31G method that is applied to low alloyed carbon steels with corrosion defects having soft profiles with low stress concentration. Our research will consist in developing a method using a behavior-damage coupling of the material to highlight the weaknesses of the ASME / B31G method [1] and show for defects whose depth does not exceed 10%, these defects can survive hydrostatic testing but will develop during service when the pressure is variable.https://www.fracturae.com/index.php/fis/article/view/2421/2585PipelineCorrosionDamage MechanicsDamageFinite Element MethodElastoplastic |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
H. Berrekia D. Benzerga A. Haddi |
spellingShingle |
H. Berrekia D. Benzerga A. Haddi Behavior and damage of a pipe in the presence of a corrosion defect depth of 10% of its thickness and highlighting the weaknesses of the ASME / B31G method Frattura ed Integrità Strutturale Pipeline Corrosion Damage Mechanics Damage Finite Element Method Elastoplastic |
author_facet |
H. Berrekia D. Benzerga A. Haddi |
author_sort |
H. Berrekia |
title |
Behavior and damage of a pipe in the presence of a corrosion defect depth of 10% of its thickness and highlighting the weaknesses of the ASME / B31G method |
title_short |
Behavior and damage of a pipe in the presence of a corrosion defect depth of 10% of its thickness and highlighting the weaknesses of the ASME / B31G method |
title_full |
Behavior and damage of a pipe in the presence of a corrosion defect depth of 10% of its thickness and highlighting the weaknesses of the ASME / B31G method |
title_fullStr |
Behavior and damage of a pipe in the presence of a corrosion defect depth of 10% of its thickness and highlighting the weaknesses of the ASME / B31G method |
title_full_unstemmed |
Behavior and damage of a pipe in the presence of a corrosion defect depth of 10% of its thickness and highlighting the weaknesses of the ASME / B31G method |
title_sort |
behavior and damage of a pipe in the presence of a corrosion defect depth of 10% of its thickness and highlighting the weaknesses of the asme / b31g method |
publisher |
Gruppo Italiano Frattura |
series |
Frattura ed Integrità Strutturale |
issn |
1971-8993 |
publishDate |
2019-07-01 |
description |
The company DRC (pipe repair Department) located within the SONATRACH Company of oil and gas in Algeria, which is responsible for the repair of pipelines for the transport of gas or crude petroleum, will rehabilitate old pipes that have operated on-line for approximately 30 years or come from remaining projects. On the assumption that rehabilitating a pipeline means making it workable under the same conditions as a new structure and reducing the overall cost of the project. The abandonment of these tubes will have an important environmental and financial impact. The rehabilitation, which consists of recovering the maximum of tube, already used, therefore reduces the cost of the project. Inspection and evaluation of corrosion defects are carried out in accordance with ASME/31G method that is applied to low alloyed carbon steels with corrosion defects having soft profiles with low stress concentration. Our research will consist in developing a method using a behavior-damage coupling of the material to highlight the weaknesses of the ASME / B31G method [1] and show for defects whose depth does not exceed 10%, these defects can survive hydrostatic testing but will develop during service when the pressure is variable. |
topic |
Pipeline Corrosion Damage Mechanics Damage Finite Element Method Elastoplastic |
url |
https://www.fracturae.com/index.php/fis/article/view/2421/2585 |
work_keys_str_mv |
AT hberrekia behavioranddamageofapipeinthepresenceofacorrosiondefectdepthof10ofitsthicknessandhighlightingtheweaknessesoftheasmeb31gmethod AT dbenzerga behavioranddamageofapipeinthepresenceofacorrosiondefectdepthof10ofitsthicknessandhighlightingtheweaknessesoftheasmeb31gmethod AT ahaddi behavioranddamageofapipeinthepresenceofacorrosiondefectdepthof10ofitsthicknessandhighlightingtheweaknessesoftheasmeb31gmethod |
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