The Diagnostics and Recompletion Strategy of a Well with Sustained Casing Pressure

C. Elendu, N. Nwamara, C. Alinnor, Henry Enekhai, I. Ojukwu, James Ayoo, Olugbenga Abolarin
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Abstract

Well sustained casing pressure signifies failure in the barrier envelop of any well and results in situations where pressure is observed or recorded in the annuli of a well and this pressure usually rebounds after bleed down. This phenomenon is a precursor to environmental and safety risk to the global oil and gas industry and presents a challenging situation that requires monitoring to understand the severity and management strategy. It is assessed to be a well integrity issue due to noncompliance to well barrier concept. It has become increasingly critical to address wells with sustained casing pressure (SCP) in view of the regulations guiding the industry and the operating environment which is experiencing an escalation of third-party activities. A bridge of well safety portends serious safety, health, environmental, operational, and integrity risks. Well PO-21 was completed as a single string, horizontal completion in the Q-10/PO-20 reservoir in 2004. Although, the well exceeded the production targets, it was subsequently shut-in in 2007 due to SCP. The initial well work attempts were carried out but were ineffective in resolving the SCP concerns: the well works carried out to isolate the casing pressure include tubing hole finding and setting of pack-off to isolate the holes. These activities could not resolve the sustained casing pressure issues with the well until a comprehensive analysis of the well, using a production logging tool comprising of noise and temperature log was deployed which gave a better understanding of the challenges of the well. A Major Rig Work Over (MRWO) was subsequently carried out on well and production was restored. The well has continued to produce. This paper sets out to explore the holistic study of well PO-21: the initial well construction – drilling (casing, cementing, etc.,) and completion (lower and upper) design and operations. It will also showcase the production and nature of the problem observed during the production, the evaluations, and diagnostics carried out to isolate the source of SCP. The step-by-step solution approach in eliminating possible sources will be discussed based on the identified issues with the well using acquired data. The paper will also focus on the MRWO operations, and the several challenging situations encountered which necessitated a management of change from the planned recompletion strategy in response to the observed well condition. The well was successfully recompleted with no loss of containment and several lessons were learnt.
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持续套压井的诊断与再完井策略
井筒持续的套管压力意味着任何一口井的封隔层失效,并导致在井的环空中观察或记录压力,并且该压力通常在泄油后反弹。这种现象是全球油气行业环境和安全风险的先兆,并提出了一个具有挑战性的情况,需要进行监测,以了解其严重性和管理策略。由于不符合井屏障概念,因此被评估为井完整性问题。鉴于指导行业的法规以及第三方活动不断升级的作业环境,解决持续套管压力(SCP)井的问题变得越来越重要。油井安全桥梁预示着严重的安全、健康、环境、作业和完整性风险。PO-21井于2004年在Q-10/PO-20油藏中以单管柱水平完井方式完成。尽管该井超出了生产目标,但由于SCP问题,该井于2007年关闭。最初的工作尝试在解决SCP问题上是无效的:为了隔离套管压力而进行的工作包括寻找油管孔和设置封隔器以隔离井眼。这些活动无法解决井的持续套管压力问题,直到使用包含噪声和温度测井的生产测井工具对井进行全面分析,从而更好地了解井的挑战。随后进行了一次大型钻机作业(MRWO),恢复了生产。这口井仍在继续生产。本文旨在对PO-21井进行整体研究,包括初期建井——钻井(套管、固井等)和完井(上下井)设计与作业。它还将展示在生产过程中观察到的问题的生产和性质、评估和诊断,以隔离SCP的来源。我们将根据收集到的数据,根据井中发现的问题,讨论逐步消除可能来源的解决方案。本文还将重点介绍MRWO作业,以及遇到的一些具有挑战性的情况,这些情况需要根据观察到的井况改变计划的再完井策略。该井在没有泄漏的情况下成功地重新完井,并吸取了一些教训。
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