- Format
- Inbunden (Hardback)
- Språk
- Engelska
- Antal sidor
- 504
- Utgivningsdatum
- 2016-04-13
- Förlag
- Cambridge University Press
- Illustratör/Fotograf
- 308 b, w illus 56 tables 47 exercises
- Illustrationer
- 308 b/w illus. 56 tables 47 exercises
- Dimensioner
- 264 x 178 x 31 mm
- Vikt
- Antal komponenter
- 1
- Komponenter
- 68:B&W 7 x 10 in or 254 x 178 mm Case Laminate on White w/Gloss Lam
- ISBN
- 9781107121331
- 1312 g
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Ed Yong
HäftadFatigue Design of Marine Structures
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'... contains very comprehensive information and a large number of interesting examples of fatigue assessments particularly of welded joints ... It is written well and with great care and illustrated by numerous figures and diagrams. The reader finds the experience and personal views of the author throughout the book. ... a very important and valuable contribution in the quite complex field of fatigue design which should be found in all bookshelfs or computers of structural engineers of marine structures.' Wolfgang Fricke, Marine Structures
Övrig information
Inge Lotsberg is a Specialist Engineer and Senior Vice President at DNV GL (merger of Det Norske Veritas and Germanischer Lloyd) in Norway. He has more than forty years' practical experience with design and verification of steel structures, linear and non-linear finite element analysis, rule development, fatigue and fracture mechanics analyses, reliability analysis, and laboratory testing. The author or coauthor of 120 refereed papers, he has also served as a member and chairman in committees for the development of fatigue design standards within NORSOK and ISO.
Innehållsförteckning
1. Preface; 2. Introduction; 3. Fatigue degradation mechanism and failure modes; 4. Fatigue testing and assessment of test data; 5. Fatigue design approaches; 6. S-N curves; 7. Stresses in plated structures; 8. Stress concentration factors for tubular and shell structures subjected to axial loads; 9. Stresses at welds in pipelines, risers, and storage tanks; 10. Stress concentration factor for joints; 11. Finite element analysis; 12. Fatigue assessment based on stress range distributions; 13. Fabrication; 14. Probability of fatigue failure; 15. Design of bolted and threaded connections; 16. Fatigue analysis of jacket structures; 17. Fatigue analysis of floating platforms; 18. Fracture mechanics and unstable fracture; 19. Fatigue design of grouted connections; 20. Planning of in-service inspection for fatigue cracks; References; Appendix A: examples of fatigue analysis; Appendix B: stress intensity factors.