利用下一代物联网智能自主控制器优化油田产量的间歇气举技术

H. Tyagi
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摘要

本文概述了一种利用基于工业4.0技术的下一代物联网(IoT)智能控制器,应用间歇气举技术优化陆上成熟油田浅层、低井底压力(BHP)油藏产量的方法。事实证明,基于软件的分析、设计、优化和自动化能够有效提高现有气举井的产量。为提高气举系统的效率,设计了一个选择标准和工作流程设置。从间歇气举技术的角度对低产能井进行了分析、设计和故障排除。它结合了基于物联网的智能自主地面控制器,对井下完井珠宝的改变最小,从而消除了修井的需要,优化了产油量,减少了过量注气,缩短了停机时间,提高了整个石油生产过程的效率,超出了传统气举系统的能力。该系统已成功安装在2.375 in的井中。没有任何生产延迟的油管。在中东地区的一家大型运营商的16口井的试验项目中,该技术显著改善了井的性能,增加了600桶/天的产量,节省了500万立方英尺/天的注气量。这是一种经济有效的技术,可以优化现有油井的产量,提高油田价值。本文考虑了集成软件自动化组合有助于恢复和提高最终采收率的案例,并提出了合适的措施,使生产工程师能够分析现有油井的恢复性能。随着成熟油田复杂性的增加,提高采收率的每一步都伴随着成本的增加。因此,在当前的商业环境中,经济实惠的新技术将在最大限度地实现经济复苏和满足不断增长的需求方面发挥关键作用。
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Intermittent Gas Lift Technology for Optimising Production from an Oilfield Using Next Generation IoT Based Intelligent Autonomous Controller
This paper outlines an approach to optimize production from a shallow, low bottomhole pressure (BHP) reservoir in a mature onshore oilfield by the application of intermittent gas lift technology using Next Generation Internet of Things (IoT) based Intelligent Controller which works on industry 4.0 technologies. Enhanced software-based analysis, design, optimization, and automation has proved to be effective in enhancing the production rate from an existing gas lifted well. A selection criterion and workflow setup were devised for a major operator to enhance the efficiency of a gas lift system. Low production capacity wells were analyzed, designed, and troubleshooted from an intermittent gas lift technology perspective. It incorporated an IoT-based intelligent autonomous surface controller with a minimal change in downhole completion jewelry which eliminated the need of workovers, optimized oil production, reduced over injection of gas, diminished downtime, and improved the effectiveness of the overall petroleum production process beyond the capability of a conventional gas lift system. This system was successfully installed in wells with 2.375-in. tubing without any production deferment. A pilot project on sixteen wells for a major operator in the Middle East exhibited a significant improvement in well performance with an incremental gain of 600 bfpd along with savings of 5 mmscfd of injection gas. It is a cost-effective technology to optimize production and enhance the field value from existing wells. This paper considers cases in which an integrated software-automation portfolio helps in reviving and increasing ultimate recovery and recommends suitable actions which allow production engineers to analyze performance of reviving existing oil wells. With the increased complexity of mature fields, each next step to enhance recovery comes with increased cost. Therefore, novel horizons of affordable technology will play a pivotal role to maximize economic recovery and meet rising demand in the current business environment.
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