采用同轴连续油管喷射泵技术对尾管系统进行三级SAGD尾管修井作业

S. Winkler, G. Luebke, C. Jensen, R. Cross, T. Bradshaw
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引用次数: 1

摘要

在成熟的SAGD作业中,过多的固体产量和尾管问题是常见的并发症,可能会引起井的完整性问题。在SAGD井中,有几个因素可能单独或共同导致固体产量过高和/或尾管失效。随着时间的推移,油藏特征、井结构和已知的井下条件会影响生产结果和尾管退化的可能性。生产策略通常考虑流体力学、冶金和热循环,以限制蒸汽突破、窜流和/或低亚冷事件。即使采用了最好的结构和生产实践,生产井中固体的逐渐积累也会限制最佳产能。SAGD作业公司可能会选择井下修井作业,以减轻未来发生故障的可能性,或者要求进行修井作业,为尾管修复做准备。本文首先概述了SAGD井中常用的清洗方法。然后,本文分三个阶段讨论了SAGD井下修井作业:(1)喷射文丘里管清洗,(2)常规磨铣,(3)安装修复尾管系统。喷射文丘里管清洗器由同轴连续油管和工程喷射泵组成。它的设计目的是人工提升井筒材料,清洁SAGD井筒,同时记录从特定位置返回的固体体积。测量磨铣确认了可接受的直径,以顺利安装衬管。前两个阶段确保了补救尾管系统的无缝安装,以减轻限制生产或影响井完整性的有害机制。来自两家作业者的两个稠油层的两个案例研究证明了SAGD尾管修井的有效性。案例总结和结果证明了SAGD尾管修井的成功,证实了其一致性和可重复使用,并显示了其与SAGD作业补救技术的兼容性。本文阐述了有效清洗SAGD井眼的重要性,为尾管修复做准备,并为未来的井完整性作业提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Three-Stage SAGD Liner Intervention to Remediate a Liner System Using Concentric Coiled Tubing Jet Pump Technology
Excessive solids production and liner issues are familiar complications in maturing SAGD operations, potentially causing well integrity concerns. There are several factors that can occur, in isolation or in combination, to cause excessive solids production and/or liner failures in SAGD wells. Reservoir characteristics, well construction and known downhole conditions contribute to production results and potential liner degradation over time. The production strategy typically considers fluid mechanics, metallurgy, and thermal cycling to limit steam breakthrough, channeling, and/or low sub-cool events. Even with the best construction and production practices, the gradual accumulation of solids in a production well can limit optimal productivity. SAGD Operators may choose a downhole intervention to mitigate the potential of a future failure or require an intervention to prepare for liner remediation. The paper begins by outlining common cleanout methods used in SAGD wells. Then, it discusses a SAGD downhole intervention in three stages: (1) a jetting venturi cleanout, (2) a gauge mill run, and (3) installation of a remedial liner system. The jetting venturi cleanout is comprised of concentric coiled tubing coupled with an engineered jet pump. It is designed to artificially lift wellbore materials, cleaning the SAGD wellbore while recording the volume of solids returned from a specific location. The gauge mill run confirms an acceptable diameter for smooth liner installation. These first two stages ensure seamless installation of the remedial liner system to mitigate detrimental mechanisms that limit production or impact well integrity. Two case studies, in two heavy oil formations from two Operators, support the effectiveness of the SAGD liner intervention. The case summaries and results demonstrate the success of the SAGD liner intervention, corroborate its consistent and repeatable use and show its compatibility with remedial techniques in SAGD operations. The paper establishes the importance of effectively cleaning and clearing a SAGD wellbore in preparation for liner remediation and to provide insight into future well integrity operations.
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