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Industry's First PDC Bit Gauge Design for Improved Tracking In North American Horizontal Wells

机译:工业首款PDC位仪表设计,用于改进北美水平井的跟踪

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PDC bit gauge pad design parameters are well understood for providing the desired build up rate (BUR), but these designs provide minimal value in the horizontal section. Outside forces, such as bit walk and formation push, can cause deviations in inclination and azimuth. Trajectory corrections on both motor and RSS assemblies can significantly slow the drilling process and result in more tortuous wellbores. Thus, a PDC gauge pad design that provides minimal side cutting at low side loads, while achieving typical BUR at higher side loads should result in a PDC bit that tracks better with fewer unintended deviations and resulting trajectory corrections for improved overall drilling efficiency. Prototype bits were developed with a tracking gauge pad design. Laboratory tests demonstrated the desired side cutting response at various side loads. Field tests are being conducted across the U.S. on pad wells offering direct comparisons to offsets using conventional PDC bits. This paper presents the tracking gauge pad design concept, laboratory test results, and field performance improvements. Results show reduced trajectory deviations and dogleg severity, improving overall section ROP and hole quality. Until now, the role of PDC bits has focused primarily on achieving the intended BUR and instantaneous ROP, leaving tracking performance solely to the drilling system. The tracking PDC gauge design concept breaks this paradigm by providing a PDC bit that tracks better than conventional bits for significant gains in directional drilling efficiency.
机译:PDC位仪表垫设计参数很好地理解为提供所需的构建速率(BER),但这些设计在水平部分中提供最小值。外部力量,如步行和形成推,可以导致倾斜和方位角的偏差。电机和RSS组件上的轨迹校正可以显着减慢钻井过程,导致更曲折的井筒。因此,在低侧载荷下提供最小侧切割的PDC计焊盘设计,同时在较高侧载荷实现典型的BAR的同时应导致PDC位,该PDC位较好地通过较少的意外偏差和产生的轨迹校正来提高整体钻井效率。使用跟踪规格垫设计开发了原型位。实验室测试在各种侧载时证明了所需的侧切割响应。现场测试正在美国在美国进行直接比较的垫片上使用传统的PDC位进行直接比较。本文介绍了跟踪规格垫设计理念,实验室测试结果和现场性能改进。结果表明,轨迹偏差减少,狗屎严重程度,改善了整体剖面剖腹产。到目前为止,PDC位的作用主要集中在实现预期的BUR和瞬时ROP上,仅留给钻井系统的跟踪性能。跟踪PDC仪表设计概念通过提供比传统比特更好的PDC位来打破该范例,以便在方向钻井效率下获得显着的增益。

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