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Efficacious Use of Simple and Cost Effective Acoustic Flow Analyzer Measurement to Enhance Recovery and Improve Life Cycle of Wells

机译:有效地利用简单且经济高效的声学流动分析仪测量,以提高康复的恢复和改善生命周期

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Well integrity technologies have been in high demand within the oil and gas industry in the recent years due to two main reasons; Recent incidents and down term in industry. The recent failures and blow out incidents occurring in different parts of the world encouraged new strategies and well integrity management systems to be deployed in order to ensure wells are meeting health, safety and environmental standards. Moreover, the down term in industry caused by relatively low oil price which led oil and gas operators to scale down on exploration and drilling and alternatively work-over existing wells. It is believed that the most economical way to work-over the well is by performing data acquisition first, which enables the work-over team to do an informed decision and tackle the specified problem, saving non-productive time. One of the fast growing well integrity technologies is leak detection. Unlike conventional data acquisition techniques such as corrosion monitoring, leak detection method traces the fluids entering to the well-bore and gives a dynamic image of what’s going on in a producing/injecting well. The leak detection is mainly based on passive acoustic measurement, which is typically based on listening to fluid vibration by moving through different aperture sizes, and recorded in different frequencies and amplitudes. Other measurements are recommended to add such as temperature, pressure and multiphase sensors (in case leak is suspected to be inside the tubing). The technology has been used in various locations around the world with challenging environments. The typical and most desired ones are firstly the surface casing leaks where fluids of various types enter into the annuli between casings and build up on surface. Moreover, high amounts of undesired fluids contributing to the production and the source would be hard to identify with conventional technologies.
机译:由于两种主要原因,近年来,近年来石油和天然气行业的需求量良好的诚信技术良好;工业最近的事件和下降期限。最近在世界各地发生的故障和爆炸事件鼓励要部署的新战略和良好的诚信管理系统,以确保井是满足健康,安全和环境标准。此外,由相对低的油价引起的工业中的唐吉术语导致石油和天然气运营商扩展勘探和钻井的落地,也可以在现有的井上缩减。据信,最经济的工作方式 - 通过首先进行数据采集,这使得工作团队能够做出明智的决定并解决指定的问题,节省非生产时间。快速增长的井完整性技术是泄漏检测。与诸如腐蚀监测的常规数据采集技术不同,泄漏检测方法涉及进入井筒的流体,并给出在生产/注射井中发生的内容的动态图像。泄漏检测主要基于被动声测量,这通常基于通过通过不同的孔径尺寸移动流体振动,并以不同的频率和幅度记录。建议使用其他测量以增加诸如温度,压力和多相传感器(如果怀疑泄漏在管内)。该技术已在世界各地的各个地点用于挑战环境。典型的和最期望的首先是表面壳体泄漏,其中各种类型的流体进入壳体之间的含量并在表面上积聚。此外,对生产和来源有助于生产的大量不希望的流体将很难用常规技术识别。

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