首页> 外文会议>SPE Middle East Oil and Gas Show and Conference >Continuous Proportional Steering for a Re-Entry Multi-Lateral Well in Cretaceous Reservoir in UAE Saves Rig Days and Achieves Reservoir Contact Objectives in a One-Bit Run
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Continuous Proportional Steering for a Re-Entry Multi-Lateral Well in Cretaceous Reservoir in UAE Saves Rig Days and Achieves Reservoir Contact Objectives in a One-Bit Run

机译:在阿联酋在白垩纪储层中重新进入多旁井的连续比例转向节省了钻机日,并在一点运行中实现了水库联系人目标

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The challenge was to achieve more reservoir contact in a cretaceous tight reservoir to improve production and maximize recovery. Multilateral well campaigns were performed to meet these objectives. This case study describes an effective workflow for performing openhole sidetracks in this challenging medium-hard carbonate formation. The workflow maintained reservoir contact and achieved the desired production objectives. Two 6-in. multilateral drain sections were successfully drilled by performing openhole sidetrack using the continuous proportional steering method (CPSM). This method is not new to the industry, but this case study describes the systematic, unique workflow that was designed and followed to ensure a successful sidetrack in this low-porosity, hard formation. The sidetrack implementation started by creating humps at inclinations ranging from 88 to 91 degrees into the formation in the original 6-in. section. These humps were confirmed using near-bit inclination data (4.5 ft from the bit) and were identified as the sites for initiating a sidetrack. This paper discusses the best practices that were key to the successful execution of the project in one run on the first attempt. After the sidetrack, use of appropriate combinations of shallow and deep logging-while-drilling (LWD) measurements in the same bottom hole assembly (BHA) enabled the direct geosteering of the well, exposing more reservoir surface area than planned. A reduction of 10% from the planned well duration was achieved. Two 6-in. laterals, each approximately 4000 ft, were drilled in a single run and 100% reservoir contact was achieved. This experience proved that planning and precise execution could enable drilling of openhole sidetracks, even through hard formations. These sidetracks can then achieve fishbone wells with desired reservoir contact and realize the field development objectives in a technically robust and cost-efficient manner. CPSM does not rely on a pressure drop for steering. Although this proof of concept was performed in a relatively hard formation, similar workflows with appropriate drilling engineering may be applied to less- competent formations as well. The detailed procedure and flowchart created from the experience with the sample well can be adopted for use in similar applications.
机译:面临的挑战是在白垩纪紧密水库中实现更多的水库接触,以改善产量并最大化恢复。进行多边井竞选活动以满足这些目标。本案例研究描述了在这种挑战中硬碳酸盐形成中进行冰孔侧面的有效工作流程。工作流程维持水库接触并实现了所需的生产目标。两个6-in。通过使用连续比例转向方法(CPSM)进行透露孔侧面,成功钻探多边漏极部分。这种方法对行业来说并不新鲜,但这种情况研究描述了设计和遵循的系统,独特的工作流程,以确保在这种低孔隙率,硬形成中成功的侧面。通过在原始6英寸的形成范围内的倾斜度的倾斜度产生驼峰来实现侧面实现。部分。使用近比特倾斜度数据(从位4.5英尺)确认这些驼峰,并被识别为用于启动侧面的位点。本文讨论了在第一次尝试时讨论了成功执行该项目的关键的最佳实践。在侧面之后,在同一底孔组件(BHA)中使用适当的浅和深钻孔(LWD)测量的钻孔(LWD)测量,使得井的直接地汇率,暴露于比计划的更多的水库表面积。实现了从计划井中的持续时间减少10%。两个6-in。横向,每个大约4000英尺,在一次运行中钻出,实现了100%的储层接触。这种经验证明,规划和精确的执行可以使冰孔侧面钻探,即使是通过硬形成。然后,这些侧面可以通过所需的储存器接触来实现钓鱼孔,并以技术上坚固且经济高效的方式实现现场发展目标。 CPSM不依赖于转向的压力下降。尽管这种概念证明是以相对较硬的形成进行的,但也可以应用于适当的钻井工程的类似工作流也适用于较低的地层。可以采用在类似的应用中使用从样本井的体验中创建的详细过程和流程图。

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