Well Integrity Catastrophe Avoided Through Advanced Well Integrity and Reservoir Monitoring Analysis, a Case Study

Mohamed Elyas, Sherif Aly, U. Achinanya, S. Prosvirkin, Shayma AlSaffar, Muthafar Mohammad, M. Siddiqui, Awrad Fahad
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Abstract

Well integrity is one of the main challenges that are facing operators, finding the source of the well problem and isolating it before a catastrophic event occurs. This study demonstrates the power of integrating different reservoir monitoring and well integrity logs to evaluate well integrity, identify the underlying cause of the potential failure, and providing a potential corrective solution. Recently, some Injector/producer wells reported migration of injection fluids/gas into shallower sections, charging these formations and increasing the risk of compromised well integrity. Characterization of the well issues required integration of multi-detector pulsed-neutron, well integrity (multi finger caliper, multi-barrier corrosion, cement evaluation, and casing thickness measurements), high precision temperature logs and spectral noise logs. After data integration, detailed analysis was performed to specifically find the unique issues in each well and assess possible corrective actions. The integrated well integrity logs clearly showed different 9.625-inch and 13.375-inch casings leak points. The reservoir monitoring logs showed lateral and vertical gas and water movements across Wara, Tayarat, Rus, and Radhuma formations. Cement evaluation loges showed no primary cement behind the first barrier casing which was the root cause of the problem. Therefore, the proposed solution, was a cement squeeze. Post squeeze, re-logging occurred, validating zonal isolation and a return of a standard geothermal gradient across the Tayarat formation. Most importantly, the cement evaluation identified good bond from the squeeze point clear to surface, isolating all formations. All these wells were returned to service (injector/producer), daily annular pressure monitoring confirmed that no further pressure build up was seen. Kuwait Oil Company managed to avoid a catastrophic well integrity event on these wells and utilized the approach presented to take the proper corrective actions, and validate that the action taken resolved the initial well integrity issues. Consequently, the wells were returned to service, and the company avoided a costly high probability blowout.
通过先进的井完整性和油藏监测分析避免了井完整性灾难,一个案例研究
井的完整性是作业者面临的主要挑战之一,如何在灾难性事件发生之前找到问题的根源并将其隔离。该研究证明了整合不同油藏监测和井完整性测井的力量,可以评估井完整性,识别潜在失效的根本原因,并提供潜在的纠正方案。最近,一些注入/生产井报告了注入流体/气体运移到较浅的部分,对这些地层进行了充注,增加了井完整性受损的风险。井问题的表征需要集成多探测器脉冲中子、井完整性(多指测径器、多屏障腐蚀、水泥评价和套管厚度测量)、高精度温度测井和频谱噪声测井。数据整合后,进行了详细的分析,专门找出每口井的独特问题,并评估可能的纠正措施。综合井完整性测井清楚地显示了9.625英寸和13.375英寸套管的不同泄漏点。储层监测测井显示了Wara、Tayarat、Rus和Radhuma地层的横向和垂直气水运动。固井评价记录显示,第一道屏障套管后没有一次固井,这是问题的根本原因。因此,提出的解决方案是水泥挤压。挤压后,重新进行了测井,验证了层间隔离,并恢复了整个Tayarat地层的标准地热梯度。最重要的是,水泥评价确定了从挤压点到地面的良好粘结,隔离了所有地层。所有这些井都重新投入使用(注入/生产),每日环空压力监测证实没有进一步的压力增加。科威特石油公司设法避免了这些井发生灾难性的井完整性事件,并利用所提出的方法采取了适当的纠正措施,并验证了所采取的措施解决了最初的井完整性问题。最终,油井恢复使用,公司避免了代价高昂的井喷事故。
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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