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Optimal Bit, Reamer Selection and Operating Procedures Improve Hole Enlargement Performance in Deepwater Gulf of Mexico

机译:最佳位,铰刀选择和操作程序提高了墨西哥深水海湾的空穴扩大性能

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Hole enlargement using underreamers has become a necessary drilling practice in deepwater Gulf of Mexico. Underreaming while drilling saves operators an extra trip to open a hole, and improves drilling budgets. Further benefits include better equivalent circulating density management and optimal cement jobs because of the bigger annulus. With these benefits come great challenges that can be categorized into three classes: 1) Drilling dynamics 2) Drilling performance and 3) Hole quality. These challenges, if not addressed during the planning and execution phase, can lead to tool failure, lower penetration rates, and hole angle deflection. This paper presents a deepwater Gulf of Mexico success story where a total systems optimization approach was utilized to overcome the previously mentioned challenges, generating a scalable improvement in drilling efficiency. This paper presents the planning and results from two sections of the subject well - 18 1/8 x 21 in. and 16 ? x 19 in. Each section had different sets of challenges. The first section was drilled through an inter-bedded formation entering at the top of the salt, while the second section was drilled entirely in salt. To overcome these challenges, an optimization approach was followed, which consisted of four steps - 1) Offset well analysis 2) Bit/underreamer selection 3) Development of optimum drilling parameters and 4) Roadmap to manage these parameters on the rig. According to field results, this approach improved the ROP by more than 15% in the 18 1/8 x 21-in. salt section. Drilling efficiency for both sections was enhanced by more than 65% when compared to previous offsets. For both sections, the maximum hole inclination was 0.13° or less, keeping the well vertical. Furthermore, lower axial and lateral vibrations were observed, eliminating downhole tool failures while the bit and underreamer came out with better dull conditions compared to the offsets.
机译:井径扩大使用扩孔器已经成为深水墨西哥湾钻探需要的做法。扩孔钻的同时节省了运营商的额外之旅开一个口子,并提高钻井预算。进一步的好处包括更好的当量循环密度管理,因为大环的最佳水泥作业。凭借这些优势,可分为三类巨大挑战:1)钻井动态2)钻孔性能和3)孔质量。这些挑战,如果在规划和执行阶段得不到解决,可能会导致刀具失效,低渗透率,以及孔偏转角。本文礼物,其中一个整体系统的优化方法被用来克服前面提到的挑战,生成钻井效率可扩展的改善深水墨西哥湾的成功故事。本文介绍了规划和成果从受试者的两段很好 - 18 1/8 X 21和16? X19英寸每个部分有不同的套挑战。第一部分是通过在所述盐的顶部间形成层状进入钻孔,而第二部分是在盐完全钻孔。为了克服这些挑战,一种优化方法之后,其中包括的四个步骤 - 1)偏移以及分析2)位/扩孔选择3)的最佳钻井参数发展和4)路线图来管理在钻机上这些参数。据字段的结果,这种方法提高了超过15%,在18 1/8×21-在ROP。盐部分。为两个部分的钻探效率超过65%,较先前偏移时增强。对于这两个部分,最大孔倾角为0.13°以下,保持井垂直。此外,较低的轴向和侧向振动,观察到,从而消除了井下工具的故障而位和扩孔更好平淡条件相比的偏移量就出来了。

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