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中国工程科学    2016, Vol. 18 Issue (2) : 19-31     https://doi.org/10.15302/J-SSCAE-2016.02.003
论文
海洋能源勘探开发技术现状与展望
周守为1,李清平2,朱海山2,张厚和2,付强3,张理2
1.中国海洋石油总公司,北京 100010;2.中海油研究总院,北京 100027;3.中国海洋石油总公司,北京 100010
The Current State and Future of Offshore Energy Exploration and Development Technology
Zhou Shouwei1,Li Qingping2,Zhu Haishan2,Zhang Houhe2,Fu Qiang2,Zhang Li3
1.China National Offshore Oil Corporation, Beijing 100010, China; 2.China National Offshore Oil Research Institute, Beijing 100027, China; 3.China National Offshore Oil Corporation, Beijing 100010, China
全文: PDF(1129 KB)  
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摘要 本文简要梳理了世界深水油气勘探开发技术与深水工程重大装备的发展历程,以及世界各大海域亿吨级大型深水油气田的开发概况。回顾了我国海洋石油特别是1982年中国海洋石油总公司成立后至今约34年的飞速发展进程,明确了现阶段我国已具备300 m水深以浅的海洋石油勘探开发技术体系和装备能力,达到5×107 t年产能,初步建成以海洋石油981半潜式钻井平台为核心的深水重大工程装备,同时我国南海第一个深水气田荔湾3–1气田(水深1 480 m)成功投产。在此基础上,阐述了我国海洋能源开发面临着“南台北冰”恶劣的自然条件、
关键词 海洋油气海洋工程海洋装备深水油气田开发    
Abstract:This paper briefly reviews the world’s current deep water petroleum exploration and development technology, primary equipment, and a overview of the development situation of huge deep water oil and gas fields all over the world. Meanwhile, this study also reviews the developmental history of Chinese offshore oil exploration and extraction from 34 years ago, which began after the establishment of China National Offshore Oil Corporation. At present, CNOOC has the ability to develop the offshore oil fields within water depth of 300 meters and produce about 50 million tons oil annually. The main deepwater engineering facilities such as HYSY981 Deepwater semi-submersible drilling platform were first built. In 2014, the first deep water gas field Liwan3-1 began production. However, there are more challenges for Chinese offshore oil development efforts such as typhoons in South China Sea, ice in Bohai Bay, high viscosity and pour point, high content of CO2 complex reservoir characteristics, remote flow assurance and control, etc.. The strategic development plan for China’s future offshore energy development is presented in this paper.
Keywords offshore oil and gas      offshore engineering      offshore equipment      deep sea oil and gas field development     
PACS:  TK7  
基金资助:中国工程院重大咨询项目“中国海洋工程与科技发展战略研究(II期)”(2014-ZD-5)
通讯作者: 通讯作者: 周守为, Email:海洋能源勘探开发技术现状与展望   
发布日期: 2016-02-20
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Zhou Shouwei
Li Qingping
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Fu Qiang
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引用本文:   
Zhou Shouwei,Li Qingping,Zhu Haishan, et al. The Current State and Future of Offshore Energy Exploration and Development Technology[J]. Chinese Journal of Engineering Science, 2016, 18(2): 19-31.
网址:  
https://journal.hep.com.cn/sscae/EN/10.15302/J-SSCAE-2016.02.003     OR     https://journal.hep.com.cn/sscae/EN/Y2016/V18/I2/19
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[2] Yousheng Wu, Xiaoguang Zeng, Xiaoli Xu, Bo Cao, Yang Li. Technology and Industry Development of Marine Transportation Equipment[J]. Strategic Study of Chinese Academy of Engineering, 2020, 22(6): 10-18.
[3] Task Force for the Research on China’s Engineering Science and Technology Development Strategy Marine Research Group. Development Strategy for China’s Marine Engineering Science and Technology to 2035[J]. Strategic Study of Chinese Academy of Engineering, 2017, 19(1): 108-117.
[4] Peng Tao, Lin Zhongqin, Yang Jianmin, Liu Cungen. An Exploration of Development of Construction Device for Ocean Engineering Equipment[J]. Strategic Study of Chinese Academy of Engineering, 2016, 18(4): 109-112.
[5] Task Force for the Study on Development Strategy of China’s Marine Engineering and Technology Comprehensive Research Group. Development Strategy of Marine Engineering and Technology Power[J]. Chinese Journal of Engineering Science, 2016, 18(2): 1-9.
[6] Task Force for the Study on Development Strategy of China’s Marine Engineering and Technology Comprehensive Research Group. Development Trends and Implication in Marine Engineering and Technology[J]. Chinese Journal of Engineering Science, 2016, 18(2): 126-130.
[7] Task Force for the Study on Development Strategy of China’s Marine Engineering and Technology Land-Sea Integration Research Group. Land-Sea Integration Engineering and Technology Development Strategy[J]. Chinese Journal of Engineering Science, 2016, 18(2): 49-54.
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