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The Sound of Silence: Innovative Approach to Confirm Barriers using Spectral Noise Logging

机译:沉默的声音:使用光谱噪声记录确认障碍的创新方法

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This paper details the deployment of Spectral Noise logging confirming barriers in a complex abandonment of an onshore field in the Netherlands to fulfil regulatory requirements and to support sustainable abandonment. After initial plug and abandonment (P&A) activities on the main reservoirs, measurements showed pressure build up inside annuli. Spectral noise, high precision temperature and production logging were performed to determine the cause of sustained annulus pressure (SAP) and the location of leaks. The data acquisition was performed both under shut-in and pressure bleed-off conditions and both log responses were compared to identify changes in noise patterns. The noise from specific events such as channelling or reservoir activity was detected, so the abandonment program could remediate these issues successfully. Application of spectral noise logging in this field yielded evidence that this technology can identify annulus flow for very minor build-up rates (0.1 bar/day). This paper further demonstrates the ability to allocate the SAP source behind multiple barriers and to validate plug integrity. It was observed that noise responses have a good correlation with ultrasonic cement evaluation logs aiding better understanding of the gas migration mechanism and change in noise patterns. The temperature logging in most of the wells did not indicate any difference between shut-in and bleed- off regimes due to the very low leak rates. However, it did demonstrate the absence of any major cross- flow between formations. Insights in behind-casing flow geometry along the borehole helped to work out a remedial strategy to proceed with a sustainable abandonment of the logged wells. For specific and complex cases, where conventional pressure monitoring and pressure test techniques cannot provide conclusive results, the spectral noise logging technology becomes a useful differentiator in selecting between possible scenarios during execution, The technology therefore brings significant value by reducing project cost without compromising the quality of the abandonment.
机译:本文详细介绍了在荷兰的复杂遗弃陆地遗弃的复杂放弃中的谱噪声测井确认障碍,以满足监管要求,并支持可持续的放弃。在主储层的初始插头和放弃(P&A)活动之后,测量在Annuli内部显示压力累积。进行光谱噪声,进行高精度温度和生产测井,以确定持续的环压(SAP)和泄漏位置的原因。在关闭和压力出血条件下进行数据采集,并将两种日志响应进行比较,以识别噪声模式的变化。检测到诸如渠道或储存器活动之类的特定事件的噪声,因此放弃程序可以成功地修复这些问题。频谱噪声测井在该领域的应用产生了证据,即该技术可以识别用于非常轻微的积累率(0.1巴/天)的环形流量。本文进一步展示了分配SAP源的能力,并验证插头完整性。观察到噪声反应具有与超声波水泥评估的良好相关性,从而可以更好地理解气体迁移机制和噪声模式的变化。由于极低泄漏率,大部分孔中的温度测井并未表示所关注和流出的制度之间的任何差异。但是,它确实证明了地层之间没有任何主要的交叉流量。沿着钻孔沿着套管后面流动几何的见解有助于解决补救策略,以便继续进行可持续的降噪井。对于特殊和复杂的情况下,如果传统的压力监测和压力测试技术不能提供结论性的结果,频谱噪声测井技术成为有用微分器在执行期间可能出现的情况之间进行选择,该技术因此带来通过降低项目成本显著值而不损害质量遗弃。

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