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Cost Effective Ultra-Large Diameter PDC Bit Drilling in Deepwater Gulf of Mexico

机译:墨西哥深水海湾的经济高效超大直径PDC位钻孔

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Ultra-large diameter Polycrystalline Diamond Compact (PDC) bit drilling is a fast growing cost-effective solution in high-tier deepwater drilling operations in the U.S. Gulf of Mexico (GOM) where salt is encountered in the shallow part of the wellbore. Conventional design called for roller cone (RC) (IADC Code 111-115) drill bits on positive displacement motors (PDM) in these ultra-large diameter intervals. Cost savings on drilling fluid alone, in the form of Rate of Penetration (ROP) gains through the salt interval, has the industry trending to drill these riserless sections with the use of PDC drill bits on Rotary Steerable System (RSS) drilling assemblies. New robust high torque capacity top drives, stronger drillpipe connections, larger diameter RSS tools and improved mud programs have all largely contributed to this step change in drilling performance. Additionally, evolved bit and BHA design, efficient operating parameters, improved hydraulics and vibration prediction modeling have all aided in the success of these runs. Although this emerging new trend reduces drilling times and associated cost, experience has shown there are multiple challenges that must be overcome to complete a successful run in a single trip. These challenges vary from well to well and include, but are not limited to: BHA steerability, rig equipment limitations, efficient operating parameters, identification of both sediment and salt formations, hole cleaning and hydraulics, salt creep, drilling fluid displacement, drillpipe torque limitations, stabilization placement, lateral/ torsional BHA vibrations, and others. This paper will concentrate on the multiple aspects of ultra-large diameter riserless PDC bit drilling applications and the considerations that have been used to optimize them. Prior SPE papers and data from previous deepwater GOM case histories were heavily researched and scrutinized to support the conclusions provided within the body of this paper. Together with industry experience available, these findings have resulted in a set of defined recommendations, providing operators with a guide to justify a lower cost per foot approach through the potential reduction of drilling time in these challenging applications.
机译:超大直径多晶钻石压缩(PDC)比特钻孔是在墨西哥湾美国海湾(GOM)的高层深水钻井作业中快速增长的经济高效解决方案,其中盐在井筒浅层遇到盐。在这些超大直径间隔的正排量电机(PDM)上称为滚子锥(RC)(IADC码111-115)的常规设计。单独节省钻井液的成本,以渗透间隔的渗透率(ROP)收益的形式,具有在旋转转向系统(RSS)钻孔组件上使用PDC钻头的PDC钻头来钻出这些无异性部分的行业趋势。新的强大的高扭矩容量顶部驱动器,更强大的钻孔连接,直径较大的RSS工具和改进的泥浆程序都大部分都有助于钻孔性能的这一步骤。此外,演化位和BHA设计,高效的操作参数,改进的液压和振动预测建模在这些运行的成功中都有所帮助。虽然这种新趋势降低了钻井时间和相关成本,但经验表明,必须克服多种挑战,以便在一次旅行中完成成功的运行。这些挑战因良好而且包括但不限于:BHA测量性,钻机设备限制,有效的操作参数,沉积物和盐的鉴定,孔清洗和液压,盐蠕变,钻井液排量,钻石扭矩限制,稳定安置,横向/扭转BHA振动等。本文将集中于超大直径无异型PDC位钻井应用的多个方面,以及用于优化它们的考虑因素。先前的SPE文件和来自以前的深水GOM案例历史的数据受到大量研究和审查,以支持本文主体内提供的结论。这些调查结果与行业经验一起导致了一系列定义的建议,提供了通过在这些具有挑战性应用中的钻井时间的潜在降低的钻井时间来证明每足以造成较低的成本的指南。

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