418
S. Papaefthymiou
62. Hiroshi N, Chikara K, Nobuyuki M (2013) API X80 grade electric resistance welded pipe with
excellent low temperature toughness. JFE Technical Report 18
63. Mishra DK (2014) Thermo-mechanical processing of API-X60 grade pipe line steel. National
Institute of Technology, Rourkela
64. Fraldi M, Guarracino F (2012) An analytical approach to the analysis of inhomogeneous pipes
under external pressure. J Appl Math 2012(4):1–14
65. Braskoro S, Dronkers T, Driel MV (2004) From shallow to deep implications for offshore
pipeline design. J Indones Oil Gas Commun
66. Langhelle MB (2011) Pipelines for development at deep water fields. University of Stavanger,
Stavanger
67. Elso MI (2012) Finite element method studies on the stability behavior of cylindrical shells
under axial and radial uniform and non-uniform loads. Department of Mechanical and Process
Engineering, Hochschule Niederrhein, Krefeld
68. Hillenbrand H-G, Graf M, Kalwa C (2001) Development and production of high strength
pipeline steels
69. Kara F, Navarro J, Allwood RL (2010) Effect of thickness variation on collapse pressure of
seamless pipes. Ocean Eng 37:998–1006
70. Fallqvist B (2009) Collapse of thick deepwater pipelines due to hydrostatic pressure.
Department of Solid Mechanics Royal Institute of Technology (KTH), Stockholm, Sweden
71. Ghaffarpour M, Akbari D, Naeeni HM, Ghanbari S (2019) Improvement of the joint quality
in the high-frequency induction welding of pipes by edge modification. Weld World 63:1561–
1572
72. Souza APFd et al (2017) Collapse propagation of deep water pipelines. Trondheim, Norway.
In: Proceedings of the ASME 2017 36th International Conference on Ocean, Offshore and
Arctic Engineering OMAE 2017
73. www.mannesmann-linepipe.com
S. Papaefthymiou
62. Hiroshi N, Chikara K, Nobuyuki M (2013) API X80 grade electric resistance welded pipe with
excellent low temperature toughness. JFE Technical Report 18
63. Mishra DK (2014) Thermo-mechanical processing of API-X60 grade pipe line steel. National
Institute of Technology, Rourkela
64. Fraldi M, Guarracino F (2012) An analytical approach to the analysis of inhomogeneous pipes
under external pressure. J Appl Math 2012(4):1–14
65. Braskoro S, Dronkers T, Driel MV (2004) From shallow to deep implications for offshore
pipeline design. J Indones Oil Gas Commun
66. Langhelle MB (2011) Pipelines for development at deep water fields. University of Stavanger,
Stavanger
67. Elso MI (2012) Finite element method studies on the stability behavior of cylindrical shells
under axial and radial uniform and non-uniform loads. Department of Mechanical and Process
Engineering, Hochschule Niederrhein, Krefeld
68. Hillenbrand H-G, Graf M, Kalwa C (2001) Development and production of high strength
pipeline steels
69. Kara F, Navarro J, Allwood RL (2010) Effect of thickness variation on collapse pressure of
seamless pipes. Ocean Eng 37:998–1006
70. Fallqvist B (2009) Collapse of thick deepwater pipelines due to hydrostatic pressure.
Department of Solid Mechanics Royal Institute of Technology (KTH), Stockholm, Sweden
71. Ghaffarpour M, Akbari D, Naeeni HM, Ghanbari S (2019) Improvement of the joint quality
in the high-frequency induction welding of pipes by edge modification. Weld World 63:1561–
1572
72. Souza APFd et al (2017) Collapse propagation of deep water pipelines. Trondheim, Norway.
In: Proceedings of the ASME 2017 36th International Conference on Ocean, Offshore and
Arctic Engineering OMAE 2017
73. www.mannesmann-linepipe.com
