Fatigue life estimation of the weld joint in K-node of the offshore jacket structure using stochastic finite element analysis

Author:

Larsen Mikkel Løvenskjold,Arora VikasORCID,Lützen Marie,Pedersen Ronnie Refstrup,Putnam Eric

Funder

Danish Energy Agency

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,Ocean Engineering,General Materials Science

Reference23 articles.

1. Jacket taskforce builds cost-model to enhance cost transparency;Vindmølleindustrien,2017

2. Fælles indsats skal spare 25 pct. på jacket-fundatmenter (English: joint efforts will reduce costs of jacket structrues with 25 percent);Friis-Andersen,2017

3. Automatisk svejsning skal reducere prisen på jackets (English: atomatic welding should reduce the price on jacket structures);Friis-Andersen,2017

4. Fatigue reliability for offshore structures;Wirsching;J Struct Eng,1984

5. Fatigue design of marine structures;Lotsberg,2016

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1. Fatigue Life and Crack Initiation of K and N Type Jacket Structure Using 3D Fatigue FE Analysis;Periodica Polytechnica Civil Engineering;2024-04-25

2. Fatigue life estimation of metal materials based on finite element analysis;International Journal of Materials and Product Technology;2024

3. A time-domain fatigue damage assessment approach for the tripod structure of offshore wind turbines;Sustainable Energy Technologies and Assessments;2023-12

4. Integrated Digital Reconstruction of Welded Components: Supporting Improved Fatigue Life Prediction;2023 IEEE International Conference on Imaging Systems and Techniques (IST);2023-10-17

5. Destructive and nondestructive remaining fatigue life prediction methods of metals: a review;Journal of Mechanical Science and Technology;2023-08

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