Intervention-Less Unloading Gas Lift Well Completion Design Using Shearable GLVs and Remote Actuated Barrier Device

Osama Al Khatib, Jane Mason, D. Beaman, J. Wills, A. Brodie
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Abstract

The Extended Reach Drilling (ERD) field re-development of a giant offshore field in United Arab Emirates (UAE) from four artificial islands predominantly requires the use of artificial lift (gas lift) to assist in unloading the wells post-completion operations and enhance reservoir production recovery rates. The vision was to achieve a well completion that allows for intervention-less unloading via gas lift using shearable Gas Lift Valves (GLV) and Remote Actuated Barrier Devices (RABD). The key principals in developing a solution to achieve this vision were to reduce rig time by avoiding critical path unloading, minimize post-rig activity to install live gas lift valves, and eliminate HSE exposures. Historically producer wells were completed with dummy gas lift valves and a frangible barrier device to facilitate the required completion pressure testing and provide barriers for rigging down from well. Coil Tubing (CT) was used to break the barrier device and kick off the wells with nitrogen. Once gas lift is available, the wells would be shut in, and a series of wireline interventions carried out to replace the dummy valves with live GLVs. This time consuming and costly process increases in cost when subsequent rig location covers the well that needs intervention; critical path rig time has been needed to unload wells with CT, in some cases requiring up to seven (7) rig days. This resulted in increased construction cost of each well and additional HSE exposure associated with the rig-less interventions required. A method was developed to deploy the upper completion with live, barrier qualified Tubing Pressure Shearable GLV’s (TSGLV) and a RABD, which enables all necessary well-construction integrity tests to be performed, and subsequently convert to a production configuration to allow unloading, gas lift and production of wells. Post-completion, well unloading and gas lift is immediately available without incurring critical path rig time or rig-less interventions. In this paper, the authors will demonstrate the technology that was developed, the qualification and testing program that was implemented, and final solution that enabled the Company to deliver wells successfully with remotely actuated unloading and production without the need for intervention.
采用可剪切glv和远程驱动屏障装置的无干预卸载气举完井设计
阿拉伯联合酋长国(UAE)的一个大型海上油田在四个人工岛上进行大位移钻井(ERD)油田的再开发,主要需要使用人工举升(气举)来辅助完井后的卸载作业,并提高油藏的采收率。他们的目标是利用可剪切气举阀(GLV)和远程驱动屏障装置(RABD),通过气举实现无需干预的卸油完井。开发解决方案以实现这一愿景的关键原则是通过避免关键路径卸载来减少钻机时间,最大限度地减少钻机后安装活气举阀的活动,并消除HSE风险。过去,生产井的完井作业采用假气举阀和易碎屏障装置,以方便完井压力测试,并为下井作业提供屏障。使用螺旋管(CT)打破屏障装置,用氮气踢井。一旦气举可用,井将被关井,并进行一系列电缆干预,将假阀替换为带电的glv。当后续钻机位置覆盖需要干预的井时,这一耗时且成本高昂的过程会增加成本;使用连续油管卸载井需要关键路径钻机时间,在某些情况下需要长达7个钻机天。这导致了每口井的建设成本增加,以及与无钻机干预相关的额外HSE风险。研究人员开发了一种方法,将上部完井与符合隔离标准的油管压力剪切GLV (TSGLV)和RABD一起下入,可以完成所有必要的建井完整性测试,随后转换为生产配置,允许卸载、气举和生产井。完井后,卸井和气举可以立即进行,而无需花费关键路径钻机时间或进行无钻机干预。在本文中,作者将展示所开发的技术,所实施的鉴定和测试程序,以及最终的解决方案,这些解决方案使公司能够通过远程驱动卸载和生产成功交付油井,而无需干预。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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