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Understanding Torque: The Key to Slide-Drilling Directional Wells

机译:了解扭矩:滑动钻孔方向井的关键

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An in-depth study of surface torque and its effect on drillstring and bit movement has led to the development of automated technology for optimizing directional drilling with a downhole motor/measurement while drilling (MWD) system. By assimilating surface torque with downhole bit and drillpipe behavior, the technology allows drillers to maximize drilling efficiency and improve wellbore quality (due to less trajectory tortuosity) during the sliding part of the drilling process. This paper describes this proprietary1,2,3 surface system and how developers used torque control to optimize slide drilling without introducing new equipment downhole. The new technology integrates surface and MWD data to provide the following benefits in the sliding mode: ? Improved ROP and horizontal reach capability ? Improved tool-face correction while drilling ? Improved well trajectory ? Improved motor life (less stalling) ? Quick and accurate tool-face orientation ? No lost-in-hole exposure ? Time savings from switching from rotating to sliding without coming off bottom; faster tool-face orientation; overall performance optimization (as listed above)
机译:深入研究表面扭矩及其对钻孔和比特运动的影响导致了自动化技术的开发,用于在钻孔(MWD)系统的同时利用井下电动机/测量定向钻孔。通过用井下钻头和钻井行为同化表面扭矩,该技术允许钻机在钻井过程的滑动部分期间最大化钻井效率并提高井筒质量(由于轨迹折磨)。本文介绍了该专有的1,2,3表面系统以及开发人员如何使用扭矩控制来优化滑动钻孔而不引入新设备井下。新技术集成了表面和MWD数据,以在滑动模式下提供以下优点:改进了ROP和横向覆盖能力?钻孔时改进的工具脸部矫正?改善了井轨迹?改善电机寿命(不太停滞)?快速准确的工具面向方向?没有丢失的曝光曝光?节省从旋转到滑动而不会脱离底部的时间;更快的工具面向方向;整体性能优化(如上所列)

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