Updating failure probability of a welded joint in offshore wind turbine substructures
The operation and maintenance cost of offshore wind turbine substructures contributes significantly in the cost of a kWh. That cost may be lowered by application of reliability- and risk based maintenance strategies and reliability updating based on inspections performed during the design lifetime....
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American Society of Mechanical Engineers
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ftalborgunivpubl:oai:pure.atira.dk:publications/2dc2eb2a-0a1a-4445-9d88-911ff5015409 2024-09-15T17:50:29+00:00 Updating failure probability of a welded joint in offshore wind turbine substructures Mai, Quang A. Sørensen, John Dalsgaard Rigo, Philippe 2016 https://vbn.aau.dk/da/publications/2dc2eb2a-0a1a-4445-9d88-911ff5015409 http://orbi.ulg.ac.be/bitstream/2268/196360/1/OMAE2016-54232.pdf eng eng American Society of Mechanical Engineers https://vbn.aau.dk/da/publications/2dc2eb2a-0a1a-4445-9d88-911ff5015409 info:eu-repo/semantics/openAccess Mai , Q A , Sørensen , J D & Rigo , P 2016 , Updating failure probability of a welded joint in offshore wind turbine substructures . in Proceedings of the ASME 2016 35th International Conference on Ocean, Offshore and Arctic Engineering : OMAE 2016 . , 54232 , American Society of Mechanical Engineers , Busan, South Korea , 35th International Conference on Ocean, Offshore and Arctic Engineering , Busan , Korea, Republic of , 19/06/2016 . < http://orbi.ulg.ac.be/bitstream/2268/196360/1/OMAE2016-54232.pdf > Wind turbines Offshore wind turbine Failure analysis Probability contributionToPeriodical 2016 ftalborgunivpubl 2024-07-10T12:50:24Z The operation and maintenance cost of offshore wind turbine substructures contributes significantly in the cost of a kWh. That cost may be lowered by application of reliability- and risk based maintenance strategies and reliability updating based on inspections performed during the design lifetime. Updating the reliability of a welded joint can theoretically be done using Bayesian updating. However, for tubular joints in offshore wind turbine substructures when considering a two dimensional crack growth and a failure criterion combining brittle fracture and material strength, the updating is quite complex due to the wind turbine loading obtained during operation. This paper solves that updating problem by using the Failure Assessment Diagram as a limit state function. It is discussed how application of the updating procedure can be used for inspection planning for offshore wind turbine substructures, and thus also for reducing the required safety factors at the design stage. Article in Journal/Newspaper Arctic Aalborg University's Research Portal |
institution |
Open Polar |
collection |
Aalborg University's Research Portal |
op_collection_id |
ftalborgunivpubl |
language |
English |
topic |
Wind turbines Offshore wind turbine Failure analysis Probability |
spellingShingle |
Wind turbines Offshore wind turbine Failure analysis Probability Mai, Quang A. Sørensen, John Dalsgaard Rigo, Philippe Updating failure probability of a welded joint in offshore wind turbine substructures |
topic_facet |
Wind turbines Offshore wind turbine Failure analysis Probability |
description |
The operation and maintenance cost of offshore wind turbine substructures contributes significantly in the cost of a kWh. That cost may be lowered by application of reliability- and risk based maintenance strategies and reliability updating based on inspections performed during the design lifetime. Updating the reliability of a welded joint can theoretically be done using Bayesian updating. However, for tubular joints in offshore wind turbine substructures when considering a two dimensional crack growth and a failure criterion combining brittle fracture and material strength, the updating is quite complex due to the wind turbine loading obtained during operation. This paper solves that updating problem by using the Failure Assessment Diagram as a limit state function. It is discussed how application of the updating procedure can be used for inspection planning for offshore wind turbine substructures, and thus also for reducing the required safety factors at the design stage. |
format |
Article in Journal/Newspaper |
author |
Mai, Quang A. Sørensen, John Dalsgaard Rigo, Philippe |
author_facet |
Mai, Quang A. Sørensen, John Dalsgaard Rigo, Philippe |
author_sort |
Mai, Quang A. |
title |
Updating failure probability of a welded joint in offshore wind turbine substructures |
title_short |
Updating failure probability of a welded joint in offshore wind turbine substructures |
title_full |
Updating failure probability of a welded joint in offshore wind turbine substructures |
title_fullStr |
Updating failure probability of a welded joint in offshore wind turbine substructures |
title_full_unstemmed |
Updating failure probability of a welded joint in offshore wind turbine substructures |
title_sort |
updating failure probability of a welded joint in offshore wind turbine substructures |
publisher |
American Society of Mechanical Engineers |
publishDate |
2016 |
url |
https://vbn.aau.dk/da/publications/2dc2eb2a-0a1a-4445-9d88-911ff5015409 http://orbi.ulg.ac.be/bitstream/2268/196360/1/OMAE2016-54232.pdf |
genre |
Arctic |
genre_facet |
Arctic |
op_source |
Mai , Q A , Sørensen , J D & Rigo , P 2016 , Updating failure probability of a welded joint in offshore wind turbine substructures . in Proceedings of the ASME 2016 35th International Conference on Ocean, Offshore and Arctic Engineering : OMAE 2016 . , 54232 , American Society of Mechanical Engineers , Busan, South Korea , 35th International Conference on Ocean, Offshore and Arctic Engineering , Busan , Korea, Republic of , 19/06/2016 . < http://orbi.ulg.ac.be/bitstream/2268/196360/1/OMAE2016-54232.pdf > |
op_relation |
https://vbn.aau.dk/da/publications/2dc2eb2a-0a1a-4445-9d88-911ff5015409 |
op_rights |
info:eu-repo/semantics/openAccess |
_version_ |
1810292291114369024 |