期刊文献+

南海固态流化开采天然气水合物设计参数优化 被引量:9

Optimization of Design Parameters of Solid-fluidization Exploitation of Natural Gas Hydrate in the South China Sea
在线阅读 下载PDF
导出
摘要 确保水合物开采工程安全,是实现南海固态流化开采天然气水合物商业化开采的关键和前提。为研究钻井参数对固态流化开采天然气水合物过程中多相流特性和工程安全的影响,建立了考虑水合物热分解的井筒多相流模型并分析了钻井参数对工程安全的影响,基于此,提出了确保固态流化开采天然气水合物工程安全的具体工程参数选择办法。研究结果表明:为确保固态流化开采天然气水合物工程安全,排量应该控制在40~50 L/s;如果地温梯度高于0.04℃/m,钻井时应该提前冷却钻井液;钻井液密度应该控制在1.20~1.25 g/cm^3;为最大化水合物开采效率,钻速应该保持在20 m/h左右。研究成果可为中国南海固态流化商业化开采天然气水合物提供理论指导和技术支持。 To ensure the engineering safety of hydrate exploitation is the key and prerequisite for the commercial exploitation of solid-fluidization exploitation of natural gas hydrate in the South China Sea.In order to study the influence of drilling parameters on multiphase flow characteristics and engineering safety in solid-fluidization of natural gas hydrate,a wellbore multiphase flow model considering thermal decomposition of hydrate was established and the influence of drilling parameters on engineering safety was analyzed.On that basis,the concrete parameter selection method to ensure the engineering safety was proposed.The results show that in order to ensure the safety of the solid-fluidization exploitation of natural gas hydrate,the displacement should be controlled between 40~50 L/s.If the geothermal gradient is higher than 0.04℃/m,drilling fluid should be cooled in advance.Drilling fluid density should be controlled 1.20~1.25 g/cm^3.In order to maximize the efficiency of hydrate extraction,the drilling rate should be maintained at about 20 m/h.The result of this study could provide profound theoretical bases and valuable technical guidance for the solid-fluidization commercial exploitation of natural gas hydrate in the South China Sea.
作者 黄鑫 蔡明杰 毛良杰 周守为 何玉发 HUANG Xin;CAI Ming-jie;MAO Liang-jie;ZHOU Shou-wei;HE Yu-fa(China National Offshore Oil Corporation,Beijing 100027,China;State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation,Southwest Petroleum University,Chengdu 610500,China;CNOOC Research Institute Company Limited,Beijing 100027,China)
出处 《科学技术与工程》 北大核心 2020年第33期13647-13653,共7页 Science Technology and Engineering
基金 四川省科技计划(2019YFS0045) 国家重点研发计划(2018YFC0310202-01)。
关键词 固态流化 天然气水合物 多相流 工程安全 solid-fluidization natural gas hydrate multiphase flow engineering safety
作者简介 第一作者:黄鑫(1979-),男,汉族,辽宁大连人,博士,高级工程师。研究方向:油气田开发。E-mail:2225096971@qq.com。
  • 相关文献

参考文献8

二级参考文献75

  • 1周英操,高德利,刘永贵.欠平衡钻井环空多相流井底压力计算模型[J].石油学报,2005,26(2):96-99. 被引量:31
  • 2Barker J W, Gomez R K. Formation of hydrates during deepwater drilling operations [ J ]. Journal of Petroleum Technology, 1989,41 (3) :297-301.
  • 3Ebeltofi H, Yousif M, Soergaaxd E. Hydrate control during deep water drilling:overview and new drilling fluids [ A ]. SPE 38567,1997.
  • 4Fossil B, Sangesland S. Managed pressure drilling for subsea applications: well control challenges in deep waters [ A ]. SPE/IADC 91633,2004.
  • 5Leblancc J L, Lewis R L. A mathematical model of a gas kick [ J ]. Journal of Petroleum Technology, 1968,20 (8) :888- 898.
  • 6Santos O A. A mathematical model of a gas kick when drilling in deep waters[ D]. Master of Science Thesis of Colorado School of Mines, 1982.
  • 7Nickens H V. A dynamic computer model of a kicking well[ J]. SPE Drilling Engineering, 1987,7 (3) :158-173.
  • 8Nunes J O L, Barmwart A C, Ribeiro P R. Mathematical model of a gas kick in deep water scenario [ A ]. IADC/SPE 77253,2002.
  • 9Vysniauskas A, Bishnoi P R. A kinetic study of methane hydrate formation [ J ]. Chemical Engineering Science, 1983, 38(6) :1061-1072.
  • 10Dholahhai P D, Kalogerakis N, Bishnoi P R. Kinetics of methane hydrate formation in aqueous electrolyte solutions[ J ]. The Canadian Journal of Chemical Englneering,1993,71 (2) :68-74.

共引文献75

同被引文献191

引证文献9

二级引证文献91

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