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Pump-Friendly Wellbore Design and Case Study from Mississippian Play of Oklahoma/Kansas

机译:俄克拉荷马/堪萨斯州密西西比亚戏剧井的井展设计与案例研究

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Wellbore designs and completions can positively impact long-term production in directional wells, but many directionally drilled wells are designed today without regard for future pump applications. Communication between drilling, completion, and production teams is often poor, and this negatively impacts the ability to produce in liquid-rich multiphase environments. This situation is especially true as the well matures. Early collaboration between these groups is imperative to maximize production options. Without such cooperation, many directional wells are designed without future pump success in mind. Consequently, electrical submersible pumping systems (ESPs) are excluded as a viable artificial lift solution in a majority of directionally drilled wells. ESP technology advances have made ESPs viable in many multiphase liquid-rich wells. Ignoring current ESP capabilities ultimately diminishes production over the life of some wells. Many of these directional wells flow naturally, but liquid loading reduces production without artificial lift. ESPs can be the most productive method for reducing reservoir pressure and optimizing production, and they should be considered when designing a wellbore. The Mississippian Lime in Oklahoma and Kansas (though not a shale play) has many similar attributes of a liquid-rich shale. This paper includes a case study from the Mississippian play for a horizontal drilling plan and completion technique aimed at optimizing pump performance. "Pump-friendly" fundamentals for wellbore design and geometry are presented. This paper concludes that increased awareness and implementation of a few basic principles will pay huge early dividends as the well matures.
机译:Wellbore设计和完井可以积极影响定向井的长期生产,但今天设计了许多方向钻孔井,而不考虑未来的泵应用。钻井,完成和生产团队之间的沟通往往差,这对富含液体的多相环境产生的能力产生负面影响。这种情况尤其如此。这些群体之间的早期合作必须最大限度地提高生产选项。没有这种合作,许多定向井都设计了未来的泵成功。因此,在大多数定向钻井的井中被排除为可行的人工升力解决方案。 ESP技术进步使得许多多相液体富含井中的可行性。忽略当前的ESP功能最终减少了一些井的使用寿命的生产。许多这些定向井自然流动,但液体装载减少了没有人造升力的生产。 ESPS可以是减少水库压力和优化生产最有生产力的方法,并且在设计井筒时应考虑它们。在俄克拉荷马州和堪萨斯州的密西西比莱姆(虽然不是页岩播放)有许多类似的液体页岩属性。本文包括密西西比州散步钻井计划和旨在优化泵性能的完成技术的案例研究。提出了“泵友好”​​基本面,用于井筒设计和几何体。本文得出结论,提高了一些基本原则的意识和实施将支付巨大的早期股息作为井成熟。

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