Reinventing Well Integrity and Zonal Isolation in Well Abandonment Through Prudent Subsurface Data Integration and Novel Dual Casings Cement Bond Assessment Technology

S. Zulkipli, M. Z. A. Razak, Dzulfadly B. Johare
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Abstract

Recurring safety incidents due to unexpected gas leaks from downhole and sustained annulus pressure issue have become major catastrophic events which warrant an integrated solution to determine the leakage pathways, the root causes and the remedial job required. The unexpected gas migration has impacted the production leading to permanent well abandonment leaving a significant gap to meet the production target. Hence, a proactive diagnostic and remedial solution are required in place as an agile response to the uprising crises. This paper will highlight few case studies from well abandonment in offshore Malaysia involving gas migration and the application of emerging technology to diagnose the root cause and source of the unwanted gas. Major sources of gas migration can include the shallow gas accumulation and gas channeling from deeper reservoirs either through tubing leak or behind casing seepage through the poorly bonded cement across the cased interval. A novel technology combining fiber optic, acoustic and ultrasonic measurement principles were deployed to simultaneously evaluate cement bond quality and zonal isolation in both single and dual casing layers. Compressional sonic measurement gives indication of shallow gas presence in the far field due to the deeper depth of investigation while fiber optic data will reveal the near wellbore effects behind the casing. In addition fluid samples from pre and post production wells were also analysed for leakage source determination. Results indicate that cement bond quality across the target cap rock intervals are mostly poor and do not qualify as barrier in well abandonment. This finding agrees well with compressional sonic logging and fiber optic run in the shallower well section where absence of cement has caused intense casing ringing and impacts the log data quality accordingly. The novel dual casings cement bond logging tool also indicates poor cement isolation when run across the double casing layers. The observation has been validated with independent cement bond logging run in the outer casing after the inner casing was cut and pulled. Another case study confirms presence of good cement isolation behind the casing after log validation run post tubing retrieval. Comparison of hydrocarbon composition between pre and post production fluid samples taken in similar reservoir group also revealed that the source of gas migration is coming from the deeper reservoirs through the upper tubing leak as confirmed by tubing integrity check. In conclusion, deployment of dual casings cement bond logging technology has successfully provided critical insights in real time for further decision on the remedial job. Operational efficiency, cost and time have been significantly enhanced by minimizing online rig activities and reducing equipment standby period. The case study represents an innovative and integrated solution combining both near and far field perspectives for safe well abandonment. Particularly for dual casings cement integrity evaluation special care needs to be taken during job planning, monitoring and interpretation of the results due to limited database and reference data sets.
通过谨慎的地下数据整合和新颖的双套管水泥粘结评估技术,重塑弃井中的油井完整性和区域隔离
由于井下意外的气体泄漏和持续的环空压力问题而导致的安全事故屡屡发生,已经成为重大的灾难性事件,需要采用综合解决方案来确定泄漏途径、根本原因和所需的补救工作。意外的气体迁移影响了生产,导致油井永久性废弃,为实现生产目标留下了巨大的缺口。因此,需要制定积极的诊断和补救解决方案,以灵活应对突发危机。本文将重点介绍马来西亚近海涉及气体迁移的弃井案例研究,以及应用新兴技术诊断不需要的气体的根本原因和来源。气体迁移的主要来源包括浅层气体积聚和来自深层储层的气体通道,或者是通过油管泄漏,或者是通过套管间隙粘结不良的水泥从套管后渗出。我们采用了一种结合光纤、声波和超声波测量原理的新技术,可同时评估单层和双层套管的水泥粘结质量和分区隔离情况。由于调查深度较深,压缩声波测量可显示远区浅层天然气的存在情况,而光纤数据则可揭示套管后的近井筒效应。此外,还对生产前和生产后油井的流体样本进行了分析,以确定泄漏源。结果表明,目标盖岩层间的水泥粘结质量大多较差,不能作为弃井的障碍物。这一结果与较浅井段的压缩声波测井和光纤测井结果非常吻合,在较浅井段,由于没有水泥,套管产生了强烈的振铃,从而影响了测井数据的质量。新型双套管水泥粘结测井仪器也表明,在双套管层上运行时,水泥隔离效果很差。在内层套管割断并拔出后,在外层套管中独立进行水泥粘结测井,验证了这一观察结果。另一项案例研究证实,在油管回收后进行测井验证后,套管后方的水泥隔离效果良好。在类似储层组中采集的生产前和生产后流体样本的碳氢化合物成分比较也显示,天然气迁移的源头来自更深的储层,通过上部油管泄漏,油管完整性检查也证实了这一点。总之,双套管水泥粘结测井技术的应用成功地提供了重要的实时信息,有助于进一步决策补救工作。通过最大限度地减少在线钻机活动和设备待机时间,大大提高了作业效率、成本和时间。该案例研究代表了一种创新的综合解决方案,它结合了安全弃井的近场和远场视角。由于数据库和参考数据集有限,在工作规划、监测和结果解释过程中需要特别注意双套管水泥完整性评估。
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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