期刊文献+

水下嵌入式海管终端PLET设计及建造综述 被引量:6

Summary on Design Plan and Fabrication Requirements for a New Type of Embedded PLET
在线阅读 下载PDF
导出
摘要 水下生产系统已经成为深水开发中的重要模式。海管终端 PLET 是水下生产系统的常见设施,为油气田水下回接提供接口。番禺35-1/35-2气田中的海管终端 PLET 采用了新型嵌入式的解决方案,用于194~338 m 水深,首次在国内实现了嵌入式安装。阐述了番禺35-1/35-2水下设施项目中海管终端 PLET 的设计方案、建造要求及控制措施等,为我国南海深水油气田开发积累了宝贵经验。 Subsea production system has become the important development mode in deep water development.Pipeline End Termination (PLET)is common facilities in subsea production system and is used to provide subsea tieback interface.An embedded type PLET has been adopted in Pan-yu 35-1/35-2 Gas field with the depth of 194 to 338 m.It has realized the embedded online instal-lation for domestic under water engineering for the first time.Design plan and fabrication require-ments of PLET in Panyu 35-1/35-2 subsea facilities project has been given in this paper.Technical experiences have been made for the future development of deep water oil and gas field in the south China sea.
出处 《石油矿场机械》 2014年第7期84-86,共3页 Oil Field Equipment
基金 国家科技重大专项"深水水下生产设施制造 测试装备及技术"(2011ZX05027-004)
关键词 水下生产系统 PLET 嵌入式 subsea production system PLET embedded
作者简介 肖德明(1985-),男,黑龙江齐齐哈尔人,工程师,硕士,主要从事海洋钢结构、水下结构物制造及测试工作,E—mail:xiaodm@mail.cooec.com.cn。
  • 相关文献

参考文献6

二级参考文献43

  • 1关小虎,张晓军,薛小强,熊智.橇装井口管汇装置的优化设计[J].石油矿场机械,2004,33(4):41-43. 被引量:6
  • 2李清平.我国海洋深水油气开发面临的挑战[J].中国海上油气(工程),2006,18(2):130-133. 被引量:126
  • 3Stephen j Rowe, Brain Maehenzie, Richard Snell. Deepwater installation of subsea hardware[C]///Proceedings of the lOth OffshoreSympositml. 2001.
  • 4F E Roved, L V S Sagrilo, E C P de Lima, et al. Comparing measured and calculated folrces of a manifold deployment in 940 meters water depth[C]//ASME 2003 22nd International Conference on Offshore Mechanics and Arctic Engineering. 2003:189-195.
  • 5F E Roveri, M C de Oliveira, M J Moretti. Installation of a production manifold in 2000 ft water depth offshore Brazil[C]//Offshore Technology Conference. 1996 : 10. 4043/8237-ms.
  • 6aPedro F K Stock, Maxwell B de Cerqueira, Francisco E Roveri. A new method for deploying subsea hardware in deep water[C] //Proceedings of the 2002 Deep OiIshore Teehnology. 2002,.
  • 7Jose Mauricio T G Lima, Mariele Lima Kuppens, Paulo Ferreira da Silveira, et al. Development of subsea facilities in the Roncador field[ C ]//Of/shore Technology Conference. 2008 : 10. 4043/19274-ms.
  • 8Pedro F k Stock, Mariele L Kuppens, Joao Luis b da Silva, et al. Roncador manifolds installation by the Pendulous method[C]//Preceedings of the 2007 Deep Offshore Technology. 2007.
  • 9F E Roveri, R D Machado, P F K Stock, et al. The unilization of the pendulous motion for deploying subsea hardware in ultra-deep water[ C]//Preceedings of the 2005 Deep Offshore Technology. 2005.
  • 10T Risoey, H Mork, H Johnsgard, et al. The pencil buoy method-a subsurface transportation and installation method[C]//Offshore Technology Conference. 2007.

共引文献90

同被引文献38

  • 1史南达,鲍务均.利用有限元软件对压力容器进行优化设计[J].机械设计与制造,2005(10):12-14. 被引量:18
  • 2JB4732-1995.钢制压力容器-分析设计标准[S].[S].,..
  • 3ISO 13628- 1 ,General Requirements and Recommenda- tions[S].
  • 4ISO 13628-15, Subsea Manifold and Structure General Requirements and Recommendations[S].
  • 5ZHAO Xiao lei,GUO Xin-wei. The Research on the Factory Accept Test Technology of subsea PLET [C]//2014 2nd International Conference on Energy, Power and Environmental Engineering, 2014: 986- 987.
  • 6ASME B31.8--2010, Gas Transmission and Distribu tion Piping System[S].
  • 7ASMEⅧ第二册-2011,压力容器建造另一规则[S].
  • 8陈洪军.ANSYS在机械与化工装备中的应用[M].北京:中国水利水电出版社,2007.
  • 9Cook R D,Malkus D S,Plesha M E,et al. Concepts and Applications of Finite Element Analysis [ M]. New York:John Wiley & Sons,1998.
  • 10董龙梅,杨涛,孙显.基于ANSYS对压力容器的应力分析与结构优化[J].机械设计与制造,2008(6):99-100. 被引量:45

引证文献6

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部