Moving to an Autonomous Artificial Lift Concept through Automatic ESP Restart

Ahmed Khalaf, B. Norman, S. Alquwizani, H. Almalki, Meshal Ergesous, Mohammed AlSowaier
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引用次数: 2

Abstract

Electrical submersible pump (ESP) trips and unplanned shutdowns can be a major operational challenge for many oil fields. In most of these ESP trips, the ESP can be returned back to production after conducting proper troubleshooting at surface and without any downhole intervention. The process of manually restarting tripped ESPs can be a complex and costly operation, especially in an offshore environment. Alternatively, automatic ESP restart can offer great advantages by reducing the ESP downtime. Many of the variable speed drives (VSDs) available in the market offer an auto restart feature that allows the ESP to be restarted automatically without human intervention. This paper presents the concept and the application of this technique. The activation of ESP auto restart requires considerable technical review of the different trip causes and the proper restart methodology for each. Auto restart of each trip type has to be programed differently to prevent possible harm to the ESP. Specific engineering measures and procedures shall be put in place to ensure personnel and equipment safety. In this paper, some statistical tools for ESP trips and restarts are presented to measure the success of auto restart, its effectiveness, and its limitations. The obtained results from the ESP auto-restart technique show it to be both practical and beneficial; it can significantly reduce the time to put the ESP back in operation resulting in production advancement. In addition, continuous data collection and assessment of auto-restart events play an important factor in ensuring that auto-restart settings are properly applied and adjusted for each type of variable speed drive installed in the field. Finally, the paper provides several recommendations with suggested ways to improve the functionality of this feature. The technique introduced in this paper can bring artificially lifted fields closer to an autonomous and intelligent concept of operations. The presented model can serve as a good benchmarking tool for future implementation of artificial lift automation.
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通过自动ESP重启实现自动人工举升概念
对于许多油田来说,电潜泵(ESP)起下钻和意外停机是一个重大的运营挑战。在大多数ESP起下钻中,在地面进行适当的故障排除后,ESP可以返回生产,而无需进行任何井下干预。手动重启起下钻esp是一项复杂且昂贵的操作,特别是在海上环境中。另外,自动重新启动ESP可以减少ESP停机时间,从而提供很大的优势。市场上的许多变速驱动器(vsd)都具有自动重启功能,可以让ESP在没有人为干预的情况下自动重启。本文介绍了该技术的概念和应用。启动ESP自动重启需要对不同的起下钻原因进行大量的技术审查,并针对每种原因采取适当的重启方法。每一种起下钻类型的自动重启都必须进行不同的编程,以防止可能对电潜泵造成的伤害。必须制定具体的工程措施和程序,以确保人员和设备的安全。本文介绍了一些用于ESP起下钻和重启的统计工具,以衡量自动重启的成功、有效性和局限性。ESP自动重启技术的实际应用结果表明,该技术是实用的、有益的;它可以显著减少将ESP重新投入运行的时间,从而提高生产效率。此外,对自动重启事件的持续数据收集和评估对于确保正确应用和调整现场安装的每种变速驱动器的自动重启设置起着重要作用。最后,本文提供了一些改进该特性功能的建议方法。本文介绍的技术可以使人工举升油田更接近自主和智能的操作概念。所提出的模型可以作为未来实施人工举升自动化的良好基准工具。
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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