首页> 外文会议>SPE Annual Technical Conference and Exhibition >First Ever 14 X 17 1/2-in Rathole Elimination in Gullfaks Satellite Using Downhole Drilling Mechanics and Dynamics Tool and Latest Features on PDC Design
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First Ever 14 X 17 1/2-in Rathole Elimination in Gullfaks Satellite Using Downhole Drilling Mechanics and Dynamics Tool and Latest Features on PDC Design

机译:首先使用井下钻井力学和动力学工具和PDC设计的最新功能,首先是Gullfaks卫星的Rathole消除17%

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The objective of this paper is to share the results obtained from in-depth analysis using a down hole mechanics and dynamics monitoring sub, which lead to the first successful Gullfaks Satellite 14 3/4 x 17 1/2-in Rathole elimination operation through challenging lithology. Shallow gas is encountered in the Gullfaks South area at a true vertical depth of between 335-339m (from MSL), and a casing design incorporating a 16-in liner is utilized to isolate this interval. A 14 3/4 x 17 14-in section is then drilled to isolate weak and unstable formations, and in all previous wells this section was drilled with a two run strategy. The first run to drill to section target depth (TD) while hole opening, followed by a dedicated second run to open the rathole. An opportunity was identified to improve well construction performance by eliminating the dedicated run to open the rat-hole, and tailoring the bit design to overcome the challenging lithology and high levels of shock and vibration seen on offset wells. Detailed pre-job planning and BHA design analysis was combined with new downhole technologies to overcome these challenges. Dual reamers were used within a Rotary Steerable System (RSS) BHA to drill the 14 3/4 x 17 1/2-in section and eliminate the rat-hole in one run. This innovative approach involved drilling to section target depth (TD) using an upper ball drop reamer, tool positioned 45 meters behind the bit for hole enlargement while drilling, and then pulling back to position the bit at rat-hole shoulder. At this point the upper reamer was de-activated and a lower on demand hydraulically activated reamer, mounted directly above the RSS was opened to eliminate the rat-hole. Due to excessive shocks & vibrations experienced on offset wells, a down hole drilling mechanics & dynamics sub was utilized to provide real-time information about downhole forces and BHA motions, combined with a tailored bit design to control depth of cut in sandy intervals. This unprecedented approach resulted in 2.5 days saving.
机译:本文的目的是利用下孔力学和动力学监测次分享从深入分析中获得的结果,这通过挑战,这导致第一个成功的Gullfaks卫星14 3/4 x 17 1/2-in Rathole消除操作岩性学。在Gullfaks南部地区遇到浅气体,真正的垂直深度在335-339M(来自MSL)之间,并且利用包含16英寸衬里的套管设计来隔离该间隔。然后钻出14 3/4 x 17 14-剖面,以隔离弱和不稳定的地层,并且在以前的所有井中,使用两次运行策略钻出。第一次运行以钻到孔开口的剖面目标深度(Td),然后专用第二次运行以打开rathole。通过消除专用运行来打开鼠洞,并定制比特设计来提高良好的施工性能,以克服偏移井所看到的具有挑战性的岩性和高水平的震荡和振动。详细的工作预先规划和BHA设计分析与新的井下技术相结合,以克服这些挑战。双铰刀被使用在旋转转向系统(RSS)BHA内,以钻143/4 x 17 1/2分段,并在一次运行中消除鼠标。这种创新方法涉及使用上球落叶钻头钻取截面目标深度(TD),工具位于钻孔的钻头后面45米处,然后在钻孔时拉回到位置,然后在RAT孔肩部拉回到位置。此时,上部铰刀被去激活,并且液压活化的铰刀较低,直接安装在RS上方,打开以消除大鼠孔。由于偏移井上的过度冲击和振动,利用了一个下孔钻井力学和动力学子,以提供关于井下力和BHA运动的实时信息,与定制的位设计相结合,以控制含沙间隔的深度。这种前所未有的方法产生了2.5天的节省。

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