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An Integrated Approach to Well Integrity Diagnostics Utilizing Next Generation Passive Acoustic Logging Technology

机译:利用下一代无源声学测井技术的井诚诊断综合方法

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To ensure the continuation of safe and reliable well operations diagnosing well health issues becomes increasingly necessary.Having access to the right technology can provide greater confidence in diagnostics data;enabling more effective well management and risk mitigation.As a prudent operator,bp is proactive and rigorous in monitoring the health of its well stock and is continuously introducing new technology and methods to increase the effectiveness of its surveillance capabilities.Traditionally,a combination of passive acoustics and temperature has been deployed in such investigations,but historically this has yielded limited success in offshore wells due to the combination of complex overprints.Whilst it is still acknowledged that passive acoustic logging does have limitations,chiefly due to their inability to characterize sporadic signals,next generation passive acoustics technology equipped with spectral sensor arrays have significantly enhanced abilities to measure subtle acoustic signals.This paper details an approach utilized offshore Azerbaijan for such diagnostics work,using these latest passive acoustic technologies,teamed with conventional temperature and distributed fibre optics.As part of routine and ongoing data gathering,different tools were tested across a multi-well campaign in a variety of environments and different well states;static,active annular bleed and whilst applying pressure to annuli.Previous logging programs have deployed passive acoustic tools to confirm pre-existing notions of well issues.The logging programs described in this paper used higher sample densities and longer station intervals to enable a detailed and objective view of well health.There were thousands of stations acquired in more than 10 runs across production,water and gas injector wells.The acquired dataset generated a vast number of data points across different fluid types,completions and well conditions which allowed a more robust assessment of tool repeatability,sensitivity and spectral response.Highly sensitive hydrophones in modern spectral passive acoustic logging tools along with temperature and fibre measurements integrated with other information helped our understanding of the dynamics behind the casing,allowing us to make better informed decisions about wells operations.As the datasets grew in size,quick-look processing methodology was developed to identify and characterize acoustic anomalies.The paper will demonstrate how the techniques developed have generated more confidence in passive acoustic technology.It will show how both acquisition procedures and data processing techniques were optimized to ensure the best quality answer products were delivered.
机译:为了确保延续安全且可靠的良好操作诊断健康问题的延续变得越来越必要。对正确技术的访问可以对诊断数据提供更大的信心;实现更有效的管理和风险缓解。谨慎运营商,BP是主动的严格监测其井库存的健康,并不断推出新技术和方法,以提高其监视能力的有效性。传统地,在这种调查中部署了被动声学和温度的组合,但历史上的成功有限由于复杂叠印的组合,仍然承认被动声学测井确实具有局限性,主要是由于它们无法表征散发信号,配备光谱传感器阵列的下一代无源声学技术具有显着提高了测量微妙的能力ac TIC信号。本文详细说明了一种采用离岸Azerbaijan进行此类诊断工作的方法,采用这些最新的被动声学技术,与传统的温度和分布式光纤的组合联合使用.As的例程和正在进行的数据收集,不同的工具在多井上进行了测试各种环境和不同井状态的活动;静态,有效的环形流血和施加压力。前方的记录程序已经部署了被动声学工具,以确认本文中描述的预先存在的概念。本文中描述的伐木程序使用更高样本密度和更长的站点间隔,以实现良好健康的详细和客观观点。在生产,水和气体喷射器井上超过10次运行中获得的数千个站。所获取的数据集在不同流体上产生了大量的数据点允许更强大的刀具重复性评估的类型,完成和井条件NSitivity和光谱响应。现代光谱无源声学测井工具中的高敏感的流水录以及与其他信息集成的温度和光纤测量有助于我们了解套管后面的动态,允许我们对井路操作做出更好的明智决策。数据集增长在大小的情况下,开发了快速处理方法来识别和表征声学异常。本文将展示开发的技术如何为被动声学技术产生更多的信心。它将展示如何优化采集程序和数据处理技术以确保最佳质量答案产品已交付。

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