Assessment of Interaction Between a Dent and an Adjacent Corrosion Feature on Pipelines and the Effect on Pipeline Failure Pressure by Finite-Element Modeling

Author:

Sun Jialin1,Cheng Y. Frank2ORCID,Woo Janine3ORCID,Kainat Muntaseer4,Hassanien Sherif5

Affiliation:

1. Ph.D. Student, Dept. of Mechanical Engineering, Univ. of Calgary, Calgary, AB, Canada T2N 1N4.

2. Professor, Dept. of Mechanical Engineering, Univ. of Calgary, Calgary, AB, Canada T2N 1N4 (corresponding author). ORCID: .

3. Pipeline Integrity Reliability Engineer, Enbridge Pipelines Inc., 10175 101 St. NW, Edmonton, Alberta, Canada T5J 3N7. ORCID:

4. Engineer, Enbridge Pipelines Inc., 10175 101 St. NW, Edmonton, Alberta, Canada T5J 3N7.

5. Director, Integrity Assessments, Enbridge Pipelines Inc., 5400 Westheimer Ct., Houston, TX 77056.

Publisher

American Society of Civil Engineers (ASCE)

Subject

Mechanical Engineering,Civil and Structural Engineering

Reference32 articles.

1. ABAQUS. 2013. ABAQUS user’s manual version 6.13. Providence, RI: Dassault Systems, Simulia.

2. Alexander, C. R., and J. F. Kiefner. 1997. Effects of smooth and rock dents on liquid petroleum pipelines. Washington, DC: American Petroleum Institute.

3. Study of the influence of dent depth on the critical pressure of pipeline

4. Beller M. and C. Mattheck. 1991. “Stress concentrations in pipelines due to the presence of dents.” In Proc. 1st Int. Offshore Polar Eng. Conf. 421–424. Mountain View CA: International Society of Offshore and Polar Engineers.

5. Residual ultimate strength of damaged seamless metallic pipelines with combined dent and metal loss

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