References
- Sachedina, K., & Mohany, A. (2018). A Review of Pipeline Monitoring and Periodic Inspection Methods. Pipeline Science and Technology, 2 (3), 187–203. DOI: 10.28999/2514-541X-2018-2-3-187-203
- Witek, M., Batura, A., Orynyak, I., & Borodii, M. (2018). An Integrated Risk Assessment of Onshore Gas Transmission Pipelines Based on Defect Population. Eng. Struct., 173, 150–165. DOI: 10.1016/j. engstruct.2018.06.092
- Witek, M. (2018). Validation of In-Line Inspection Data Quality and Impact on Steel Pipeline Diagnostic Intervals. Journal of Natural Gas Science and Engineering, 56, 121–133. DOI: 10.1016/j. jngse.2018.05.036
- ASME Code for Pressure Piping, B31. (2016). Process Piping. The American Society of Mechanical Engineers.
- Flare Details for Petroleum petrochemical and Natural Gas Industries. (2020). American Petroleum Institute.
- Pinheiro, B. C., & Pasqualino, I. P. (2008). Stress Concentration Factors of Longitudinal and Transverse Plain Dents on Steel Pipelines. In Proceedings of the ASME 2008 27th International Conference on Offshore Mechanics and Arctic Engineering. Volume 3: Pipeline and Riser Technology; Ocean Space Utilization (pp. 623–632). 15–20 June 2008, Estoril, Portugal. https://doi.org/10.1115/OMAE2008-57836
- State Construction Norms of the Republic of Azerbaijan. (2009). Design Norms of Main Pipelines (AzDTN 2.9-2). Baku.
- GOST 8731-74 Seamless hot-rolled steel pipes. (01/01/1976). Technical Requirements. Moscow.
- SNiP 2.05.06-85 Main pipelines. (2011). Moscow.
- TU 14-3-1573-96: Longitudinal electric-welded steel pipes with a diameter of 530-1020 mm with a wall thickness of up to 32 mm for main gas pipelines, oil pipelines and oil product pipelines. (1997). Moscow.
- Amine, M., Seghier, B., Mourad, B., Elahmoune, B., & Gaceb, M. (2017). Probabilistic Approach Evaluates Reliability of Pipelines with Corrosion Defects. Oil Gas J. 115, 64–68.
- Pesinis, K., & Tee, K. F. (2017). Statistical model and structural reliability analysis for onshore gas transmission pipelines. Engineering Failure Analysis, 82, 1–15. DOI: 10.1016/j.engfailanal.2017.08.008