Ultimate fracture capacity of pressurised pipes with defects – Comparisons of large scale testing and numerical simulations

Author:

Berg E.,Østby E.,Thaulow C.,Skallerud B.

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference27 articles.

1. Linkens S, Formby CL, Ainsworth RA. A strain-based approach to fracture assessment – example applications. In: Proceedings of the 5th international conference on engineering structural integrity assessment, EMAS 63; 2000.

2. Bratfors H. Use of strain-based ECA for the assessment of flaws in pipeline girth welds subjected to plastic deformation. In: Proceedings of the international conference on application an evaluation of high grade linepipe in hostile environments, Yokohama, Japan; 2000. p. 957–85.

3. Wang YY, Liu M, Horsley D, Zhou J. A quantitative approach to tensile strain capacity of pipelines. In: Proceedings of IPC2006, 6th international pipeline conference, Calgary, Alberta, Canada; 2006.

4. Østby E. Fracture control-offshore pipelines new strain-based fracture mechanics equations including the effect of biaxial loading, mismatch, and misalignment. In: Proceedings of OMAE2005, 24th international conference on offshore mechanics and arctic engineering. Halkidiki, Greece; 2005.

5. Østby E. Proposal for a strain-based fracture assessment procedure for offshore pipelines. In: Proceedings of the 17th international offshore and polar engineering conference, Lisbon, Portugal; 2007. p. 3238–45.

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