A new coupled fluid–structure modeling methodology for running ductile fracture

Author:

Nordhagen H.O.,Kragset S.,Berstad T.,Morin A.,Dørum C.,Munkejord S.T.

Publisher

Elsevier BV

Subject

Computer Science Applications,Mechanical Engineering,General Materials Science,Modelling and Simulation,Civil and Structural Engineering

Reference40 articles.

1. IEA/OECD. Energy technology perspectives 2008 – Scenarios and Strategies to 2050. ISBN 978-92-64-04142-4.

2. Maxey WA. Fracture initiation, propagation and arrest. In: Fifth symposium on line pipe research, American Gas Association, Houston, 1974.

3. A study of shear crack propagation in gas-pressurized pipelines;Sugie;J Pressure Vessel Technol,1982

4. Leis BN, Zhu X-K, Forte TP, Clark EB. Modeling running fracture in pipelines – past, present, and plausible future directions. In: 11th International conference on fracture, Turin, Italy, 2005.

5. Higuchi R, Makino H, Matsumara M, Nagase M, Takeuchi I. Development of a new prediction model of fracture propagation and arrest. In: High pressure gas transmission pipeline. 8th International welding symposium. Kyoto, Japan, 2008.

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