[1]
Boyun Guo,Shanghong Song: Offshore Pipelines, gulf professional publishing (2005).
Google Scholar
[2]
E.P. Heerema: Recent Achievements and Present Trends in Deepwater Pipe-Lay Systems. OTC. (2005), pp.1-2.
DOI: 10.4043/17627-ms
Google Scholar
[3]
Linacre House, Jordan Hill. Mechanics of offshore pipelines, 2007,Elsevier Science.
Google Scholar
[4]
GONG Shun-feng, CHEN Kai. Configuration Analysis of Deepwater S-Lay Pipeline. China Ocean Eng., Vol.25 (3). (2010), p.519−530.
DOI: 10.1007/s13344-011-0042-5
Google Scholar
[5]
Gary E. Harrison, Katy. Method of Deepwater Pipelay, U.S. Patent 4,992,001 (1991).
Google Scholar
[6]
http://www.kaskus.us/showpost.php?p=282224862&postcount=51
Google Scholar
[7]
M. Cavicchi. J-lay Installations Lessons Learned. OTC15333. (2003), pp.4-5.
Google Scholar
[8]
Joop Roodenburg, Erwin Vincent van Liere. Marine J-lay Pipelay System, U.S. Patent 7,850,397B2. (2010)
Google Scholar
[9]
http://hmc.heerema.com/About/Fleet/Balder/tabid/379/language/en-US/Default.aspx
Google Scholar
[10]
Lyle Stockstill, Belle Chasse, LA. Reel Type Pipeline Laying Ship and Method, U.S. Patent 6,733,208B2. (2004).
Google Scholar
[11]
http://www.huismanequipment.com/en/products/pipelay/reel_lay
Google Scholar
[12]
http://www.huismanequipment.com/
Google Scholar
[13]
http://www.offshore-technology.com/projects/sequoia-project/sequoia-project2.html
Google Scholar
[14]
http://www.globalsecurity.org/military/systems/ship/offshore-pipelayer.htm
Google Scholar
[15]
http://www.cnooc.com.cn/data/html/news/2010-05-28/english/301362.html
Google Scholar