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Kick control reliability analysis of managed pressure drilling operation

机译:施用压力钻孔操作的控制可靠性分析

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Offshore drilling involves complex operations and equipment; thus, faces many operational challenges, including well control. Managed pressure drilling has been proved to resolve most of these challenges; however, this technology, for the most part, is still in its infancy. This paper explores the safety and reliability assessment of a managed pressure drilling operation by investigating the kick control operation of constant bottomhole pressure technique of managed pressure drilling. In addition, this study seeks to understand the components interactions in an MPD system and their modes of failure. Failure scenarios are first built using a Fault Tree model and then analyzed using a Bayesian Network model. The reliability assessments of kick control operation are performed in two ways: a basic-components approach and a system-barrier elements approach. The analysis identifies communication related components, including network device damage as the most safety-critical component due to their high-level of influence while flowline and pump line blockages/rupture are ranked second-most critical but with limited-level of influence. However, the system-barrier element approach ranks the managed pressure drilling control system as the most safety-critical equipment. Further detailed analysis confirms that the monitoring equipment are the most safety-critical components of the managed pressure drilling control system with Coriolis flow meter and Rig pump exhibiting the most critical monitoring equipment. Additionally, the managed pressure drilling system's components show high degree of dependencies on one another and exhibit non-sequential modes of failure during kick control operation.
机译:海上钻井涉及复杂的运营和设备;因此,面临许多操作挑战,包括控制良好。已经证明了管理压力钻探解决了这些挑战的大部分挑战;但是,这项技术在大多数情况下仍处于初期。本文探讨了通过研究管理压力钻孔恒大井压技术的踢踏性控制操作来探讨管理压力钻探操作的安全性和可靠性评估。此外,本研究旨在了解MPD系统中的组件交互及其失效模式。首次使用故障树模型建造故障情况,然后使用贝叶斯网络模型进行分析。启动控制操作的可靠性评估以两种方式进行:基本组件方法和系统屏障元件方法。分析识别通信相关组件,包括网络设备损坏,因为它们的高度影响力,而流线和泵线堵塞/破裂排名第二是最关键的,但有有限的影响。然而,系统阻隔元件方法将受管压力钻井控制系统排名为最安全关键的设备。进一步的详细分析证实,监控设备是Coriolis流量计和钻机泵的受管压力钻孔控制系统的最安全关键组件。另外,托管压力钻井系统的组件彼此显示出高度的依赖性,并且在踢控制操作期间展示非连续的失效模式。

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