开放水域垂直圣诞树世界首例检索新方法

W. Liew, El Khalil Mohamed M’Bareck Heboul, Mohamad Shahril Majid Bin Allapitchai, S. Sellapan, Ahmad Luqman Bin Johan, Ahmad Hafizi Bin Ahmad Zaini, Mohd Hairi Bin Abdul Razak, Puteri Dharmilla Syafawati Binti Dharma Dian, Ahmad Zharif Bin Abdullah, William Zomerdijk
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引用次数: 0

摘要

在西非海上的一个深水油田(油田C)进行了井塞弃井作业。该油田共有15口深水海底井。其中13口井采用开放水域垂直采油树(OXT)完成,其余2口井采用增强型垂直采油树(EVXT)完成。在使用开放水域垂直采油树(OXT)的井中,上部完井油管和悬挂器与采油树一起下入一次。这给作业者打捞圣诞树带来了挑战。本文将讨论算子在文本检索中的新方法。由于OXT的设计与世界上大多数垂直圣诞树(XT)不同,因此在XT的检索过程中存在一些挑战。如果xt和上部完井油管的回采方式与完井方式相反,则井筒将面临长时间的单道隔离,直到防喷器可以锁紧以进行后续作业。最重要的是,原始设备制造商的完井修井隔水管(CWOR)系统和支撑着陆结构(SLS)没有完整的封装,无法在该项目中使用。此外,钻井平台的月池空间、地面OXT的处理以及钻井平台的防喷器与现有海底结构之间的冲突也受到了限制。在OXT回收过程中,为了管理井筒暴露于单个已验证和监测屏障的风险,作业者评估了几种选择,并提出了一种新的OXT回收方法,该方法能够最大限度地减少暴露时间,降低作业风险。与最初的完井原则相反,在井中建立屏障后,oxt从上部完井油管中单独取出,以便在尽可能短的时间内将钻机防喷器固定在井口上。为了实现这一目标,计划在双活动井架上进行作业。同时,使用非OEM的租赁CWOR系统与OEM CWOR系统的下入工具一起进入油井进行修井作业,随后回收oxt。通过这样做,组合CWOR堆栈超过了钻机月池的高度限制。进行了一些修改以允许操作发生。该公司还采用了一种新颖的方法,无需OEM支持着陆结构即可在地面处理OXT,从而简化了操作并降低了HSE风险。尽管一开始存在发生碰撞的风险,但该解决方案仍然能够将钻井防喷器锁在钻井中心的井口上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Approach to First in the World Retrieval of Open Water Vertical Xmas Tree
Wells plug & abandonment was carried out in a deepwater field (Field C) offshore West Africa. There were 15 deepwater subsea wells in this field. Thirteen of the wells were completed with Open Water Vertical Xmas Tree (OXT) while remaining two were completed with Enhanced Vertical Xmas Tree (EVXT). In the wells with Open Water Vertical Xmas Tree (OXT), the upper completion tubing and hanger were ran together with the Xmas Tree in a single run. This posed challenges to Operator in retrieving the Xmas Tree. This paper will discuss the novel approach used by Operator in the OXT retrieval. Due to the design of OXT which was different from most of the vertical Xmas Trees (XT) in the world, there were a few challenges in the process of XTs retrieval. If the XTs and upper completion tubing were retrieved in reversal of the way it was completed, it will exposed the well to prolonged duration of single barrier until a BOP can be latched on for subsequent activities. On top of that, the Original Equipment Manufacturer's Completion Workover Riser (CWOR) system and Support Landing Structure (SLS) was not available in full package to be utilized in this project. Furthermore, there were constraints on the rig moonpool space, handling of OXT on surface and clashes between the rig's BOP and existing subsea structures. In managing the risk of well exposure to single proven and monitored barrier during the process of OXT retrieval, Operator has evaluated a few options and came out with a novel approach in the OXT retrieval which managed to minimize exposure time and reduce risk in operations. In contrary to the original principle of well completion here, after a barrier was established in the well, the OXTs was retrieved separately from the upper completion tubing to allow rig BOP to be latched onto wellhead in shortest possible time. To achieve this objective, operations was planned to be carried out on a dual activity derrick rig. Meanwhile, a non-OEM rental CWOR system was used together with Tree Running Tool from the OEM CWOR system to access the wells for intervention work and subsequently retrieve the OXTs. By doing this, the combined CWOR stack exceeded the height limitation at the rig's moonpool. Some modifications were carried out to allow the operations to happen. A novel approach was also used to handle the OXT on surface without the OEM Support Landing Structure - which simplified the operations and reduced HSE risks. Solution was also put into place to enable latching of the rig BOP onto wellheads on Drill Centre although there were risk of clashing initially.
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