Increased Efficiency on Plug and Abandonment Campaign Using New-Generation Ultrasonic Pulse-Echo and Pitch-Catch Configuration Technology

Jose Bueno, Amit Govil, Sven Gundersen
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Abstract

An operator on the Norwegian Continental Shelf oversaw the execution of a plug and abandonment (P&A) campaign comprising 32 wells in a mature field. The barrier evaluation plan was developed based on previous experiences in a field with similar properties and conducted by another operator that included the cement and solids evaluation using conventional ultrasonic technology. This paper describes how the introduction of the latest generation transducers aided in shortening the P&A campaign duration, saving days of rig time. The entire logging plan for barrier evaluation within the32 well P&A campaign was custom developed, executed, and jointly analyzed by the operator and the service company. The logging intervals, well fluid and multiple casing size targets were considered during the strategic selection process. This enabled convergence to a solution that provided a comprehensive evaluation while avoiding multiple logging descents and achieving a faster acquisition speed without degradation of the results. Acquisition capabilities have been constantly evolving over the past decades. The full data acquisition campaign described in this paper was improved from the original plan and adjusted to include a combination of ultrasonic pulse-echo and pitch-catch imaging measurements, third interface echo (TIE), an output of the pitch-catch method supported by and the traditional sonic technology response, enabling quick annular material identification as well as casing cut-and-pull decision making. The combination of all measurements allowed a robust solution that is independent from wellbore logging fluid and potentially unknown annular materials that segregates or changes through the life of these wells. The technology blend adopted in this field enabled a direct logging time reduction of 50% and allowed the acquisition of multiple nonconcentric casing sizes in a single descent, which is not possible with previous generation technologies. The overall result helped the operator to reduce their greenhouse gas (GHG) emissions during those operations by shortening the barrier evaluation campaign length by 10 rig days. The operator was able to significantly reduce the rig time spent in the campaign the implementation of the latest ultrasonic barrier evaluation logging technology, thus reducing their overall GHG emissions without compromising the results of the original objectives.
采用新一代超声波脉冲回波和俯仰捕捉配置技术,提高了桥塞和弃井作业的效率
挪威大陆架的一家作业公司监督了一个成熟油田32口井的封井弃井作业(P&A)。屏障评估方案是根据之前在类似性质油田的经验制定的,由另一家作业公司执行,其中包括使用常规超声波技术对水泥和固体进行评估。本文介绍了最新一代换能器如何帮助缩短P&A作业时间,节省钻井时间。在32口井弃井作业中,作业公司和服务公司共同制定、执行和分析了整个测井计划。在策略选择过程中考虑了测井层段、井流体和多种套管尺寸目标。这使得收敛到一个解决方案,提供了一个全面的评估,同时避免了多次测井下降,实现了更快的采集速度,而不会降低结果。在过去的几十年里,采办能力一直在不断发展。本文中描述的完整数据采集活动在原始计划的基础上进行了改进,并进行了调整,包括超声波脉冲回波和俯角捕获成像测量的组合,第三界面回波(TIE),这是传统声波技术响应支持的俯角捕获方法的输出,能够快速识别环空材料以及套管切割和拉拔决策。所有测量结果的结合使得解决方案不受井眼测井流体和潜在未知环空物质的影响,这些物质会在井的生命周期中产生隔离或变化。该油田采用的混合技术使直接测井时间缩短了50%,并允许在一次下降中获取多个非同心套管尺寸,这是上一代技术无法实现的。总体结果帮助作业者减少了作业期间的温室气体(GHG)排放,将屏障评估周期缩短了10个钻机天。通过采用最新的超声波屏障评价测井技术,作业者能够显著减少钻井时间,从而在不影响原始目标结果的情况下减少温室气体的总排放量。
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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