首页> 外文会议>International Conference on Ocean, Offshore and Arctic Engineering >RISK ASSESSMENT AND COUNTERMEASURE ON DRILLING AND PRODUCTION PROCESS OF DEEP WATER GAS HYDRATE IN THE SOUTH CHINA SEA
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RISK ASSESSMENT AND COUNTERMEASURE ON DRILLING AND PRODUCTION PROCESS OF DEEP WATER GAS HYDRATE IN THE SOUTH CHINA SEA

机译:南海深水天然气水合物钻井和生产过程的风险评估及对策

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Deep-water natural gas hydrate has high environmental risk and high technical difficulty in drilling and production. In order to promote the development of gas hydrate, we develop the assessment methods and control technologies for the operation risk during hydrate drilling and production. The work completed includes: (1) Safety analysis of conductor and wellhead for the hydrate drilling and production Establish a pipe-wellhead stability model to determine the drilling and working conditions under different working conditions. (2) Risk assessment of wellbore blockage in hydrate drilling and production Construct a wellbore multiphase flow analysis model to determine the amount of drilling inhibitor injection; obtain the location and extent of the hydrate blockage. (3) Risk assessment of wellbore instability in hydrate production Combined with hydrate formation properties, ground stress distribution and casing mechanics model, the position of the formation instability, and the damage of casing crushing is determined. (4) Gas diffusion risk assessment due to hydrate decomposition in water Study the distribution of underwater gas diffusion formed by large-area decomposition of hydrate to get the overflow flow risk. (5) Safety model and process risk assessment of hydrate drilling operations Conduct hazard identification and operation safety analysis of hydrate drilling operations, determine the risk level of each operation stage, and support the drilling operation.
机译:深水天然气水合物在钻井和生产方面具有高环境风险和高技术难度。为了促进天然气水合物的发展,我们在水合物钻井和生产过程中开发评估方法和控制技术。完成的工作包括:(1)用于水合物钻井和生产的导体和井口的安全性分析建立了一种管井口稳定性模型,以确定在不同的工作条件下的钻井和工作条件。 (2)水合物钻井和生产中井筒堵塞的风险评估构建井口多相流动分析模型,以确定钻孔抑制剂注射量;获得水合物堵塞的位置和程度。 (3)井眼不稳定性在水合物生产中的风险评估结合水合物形成性能,地应力分布和套管机械模型,形成不稳定的位置,并确定套管破碎的损坏。 (4)气体扩散风险评估由于水合物分解在水中研究,水合物大面积分解形成的水下气体扩散的分布以获得溢流流动风险。 (5)安全模型和工艺风险评估水合物钻井作业的危险识别和水合物钻孔操作的安全性分析,确定每个操作阶段的风险等级,并支持钻孔操作。

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