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1.中海石油(中国)有限公司天津分公司, 天津 300459
2.中国海洋石油工程股份有限公司, 天津 300459
3.哈尔滨工程大学 机电工程学院, 黑龙江 哈尔滨 150001
Received:16 September 2022,
Online First:04 March 2024,
Published:05 April 2024
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Fanran MENG, Chongde ZHANG, Yong CAO, et al. Development of underwater oil and gas fields in restricted shallow waters[J]. Journal of Harbin Engineering University, 2024, 45(4): 779-785.
Fanran MENG, Chongde ZHANG, Yong CAO, et al. Development of underwater oil and gas fields in restricted shallow waters[J]. Journal of Harbin Engineering University, 2024, 45(4): 779-785. DOI: 10.11990/jheu.202209040.
针对国内浅水油气资源开发环境影响及空间受限等问题
本文提出了国产浅水水下生产系统的总体设计方案。通过对浅水水下生产系统关键设备结构进行分析
提出了一种满足受限区海域开发要求的环境友好型设计思路。结果表明: 通过系统和总体布置的设计
国产浅水水下生产系统与深水相比在单体重量、作业方式、维护检修方面更加经济。
In light of the environmental implications and spatial constraints associated with the extraction of China's oil and gas resources in shallow waters
this paper proposes a comprehensive design of the oil and gas production system for China's shallow waters. The paper further examines the key equipment structure of subsea production systems in shallow waters. Based on this analysis
it presents an ecofriendly design that fits the development needs of restricted maritime zones. The findings indicate that through innovative system design and strategic overall layout
the proposed shallow-water subsea production system is more economical in terms of unit weight
operation mode
and maintenance compared with deep-water systems. Ultimately
we emphasize that in order to achieve highly efficient and economically viable development of shallow water oil and gas fields
it remains crucial to persistently strive to tackle key technological challenges of subsea equipment.
张勇, 李超. 国内油气对外依存度发展趋势[J]. 中国石油和化工标准与质量, 2023, 43(17): 124-126.
ZHANG Yong, LI Chao. Development trend of domestic dependence on foreign oil and gas[J]. China petroleum and chemical standard and quality, 2023, 43(17): 124-126.
JAMALUDIN M A. Cost-effective application of subsea production system as field development concept in shallow water environment[C]//Abu Dhabi International Petroleum Exhibition&Conference. Society of Petroleum Engineers, Abu Dhabi, 2019.
HULSE E O, CAMPONOGARA E. Robust formulations for production optimization of satellite oil wells[J]. Engineering optimization, 2017, 49(5): 846-863.
HONG Cheng, ESTEFEN S F, WANG Yuxi, et al. Mixed-integer nonlinear programming model for layout design of subsea satellite well system in deep water oil field[J]. Automation in construction, 2021, 123: 103524.
ZHANG Yuzhe, TANG Wentao, DU Jialu. Development of subsea production system and its control system[C]//2017 4th International Conference on Information, Cybernetics and Computational Social Systems (ICCSS). Piscataway, NJ: IEEE, 2017: 117-122.
MOE S, MONSSON O S, ROKNE Y, et al. Electric controls technology: the role in future subsea systems[J ] . 2018. DOI: 10.4043/28562-MS http://dx.doi.org/10.4043/28562-MS .
SOMMER B, MAHLER C, STABLES G, et al. Competitive system concepts for electrification of subsea structures in co-existence with electro-hydraulic control systems[C]//Offshore Technology Conference. Houston, 2022: 127-132.
李志刚, 贾鹏, 王洪海, 等. 水下生产系统发展现状和研究热点[J]. 哈尔滨工程大学学报, 2019, 40(5): 944-952.
LI Zhigang, JIA Peng, WANG Honghai, et al. Development trend and active research areas of subsea production system[J]. Journal of Harbin Engineering University, 2019, 40(5): 944-952.
董庆国. 浅海水下生产系统研究[J]. 石化技术, 2019, 26(4): 189.
DONG Qingguo. Research on underwater production system in shallow sea[J]. Petrochemical industry technology, 2019, 26(4): 189.
率鹏. 水下生产系统在浅水边际油气田的应用研究[J]. 石油和化工设备, 2019, 22(4): 67-69.
SHUAI Peng. Study on application of subsea production system in shallow water marginal offshore oil&gas field development[J]. Petro&chemical equipment, 2019, 22(4): 67-69.
吴露, 安维峥. 水下生产控制系统比选及分析[J]. 石化技术, 2018, 25(9): 17-19.
WU Lu, AN Weizheng. Comparison and analysis of subsea production control system[J]. Petrochemical industry technology, 2018, 25(9): 17-19.
ZHANG Yuzhe, TANG Wentao, DU Jialu. Development of subsea production system and its control system[C]//2017 4th International Conference on Information, Cybernetics and Computational Social Systems (ICCSS). Piscataway, NJ: IEEE, 2017: 117-122.
MAXWELLJ P. Subsea production control systems[M]. Encyclopedia of Maritime and Offshore Engineering. Hoboken: John Wiley and Sons, 2018: 1-12.
安维峥, 孙钦, 魏娟, 等. 水下电液复合控制系统方向控制阀技术现状[J]. 化工自动化及仪表, 2023, 50(1): 1-9, 43.
AN Weizheng, SUN Qin, WEI Juan, et al. Technical status of directional control valves for subsea ElectroHydraulic control system[J]. Control and instruments in chemical industry, 2023, 50(1): 1-9, 43.
胡雪峰, 封延松. 电液复合式控制系统的组成及分析工况[J]. 中国造船, 2012, 53(S1): 189-199.
HU Xuefeng, FENG Yansong. Composition and analysis condition of electro-hydraulic compound control system[J]. Shipbuilding of China, 2012, 53(S1): 189-199.
WANG Liquan, WANG Xiangyu, LIZHANG Hanyi, et al. Design and reliability analysis of the electrical control system of the subsea control module[J]. Proceedings of the institution of mechanical engineers, part Ⅰ: journal of systems and control engineering, 2019, 233(6): 720-733.
YUE Y L, ZUO X, WANG L J. Reliability analysis of hydraulic directional control valve installed in subsea control module[C]//Proceedings of ASME 2012 31st International Conference on Ocean, Offshore and Arctic Engineering, 2013: 343-347.
International Standard ISO 13628-1, Petroleum and natural gas industries-Design and operation of subsea production systems-Part 1: General requirements and recommendations. [S]. Switzerland: ISO copyright office, 2010.
孙雪梅, 翁强, 张大为, 等. 压入式桩基础水下防渔网保护罩的研究与应用[J]. 石油和化工设备, 2020, 23(3): 45-47.
SUN Xuemei, WENG Qiang, ZHANG Dawei, et al. Application and research of subsea pressed pile anti-fishing protection structure[J]. Petro&chemical equipment, 2020, 23(3): 45-47.
朱春丽, 李书兆, 沈晓鹏, 等. 撞击载荷作用下水下沉箱防护设施损伤分析[J]. 海洋工程, 2021, 39(6): 136-142.
ZHU Chunli, Ll Shuzhao, SHEN Xiaopeng, etal. Damage analysis on impact of caisson structure for subsea protection[J]. The ocean engineering, 2021, 39(6): 136-142.
PLANT C. High-voltage subsea connectors: enabling innovative subsea power distribution solutions[C]//Proceedings of the Offshore Technology Conference 2020. OTC, 2020: 178-213.
WYATT R. Novelties in the design of low-voltage subsea wet-mate connectors, demonstrating enhanced electrical performance and cost reduction[C]//Proceedings of the Offshore Technology Conference, Houston, 2022: 213-256.
WANG Hao, CHEN Jiawang, ZHOU Hang, et al. Research on novel multi-way hydraulic quick connector for underwater production system[J]. Marine technology society journal, 2021, 55(6): 129-138.
GHARAIBAH E, ZHANG Y. Flow assurance aspects and optimization of subsea choke valve Sand management and erosion[C]//Offshore Technology Conference, Rio de Janeiro, 2015.
TATTERSALL S. Choke valve technology in subsea environments[J]. Measurement and control, 2016, 49(3): 104-108.
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