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    • 6. 发明申请
    • DOWNHOLE IMPACT GENERATION TOOL AND METHODS OF USE
    • 井下冲击生成工具及其使用方法
    • WO2014168623A1
    • 2014-10-16
    • PCT/US2013/036172
    • 2013-04-11
    • HALLIBURTON ENERGY SERVICES, INC.
    • MILLER, Todd, BlaineCLEMENS, Jack, Gammill
    • E21B1/12E21B1/18
    • E21B31/107E21B31/113E21B47/12
    • Disclosed is an impact generation tool used to deliver a large downhole impact force. The impact generator may include a housing having an uphole end and a downhole end and defining a chamber therein between the uphole and downhole ends, a mandrel movably arranged at least partially within the chamber between an engaged configuration and a disengaged configuration, a top sub coupled to the housing at the uphole end and having an upper core extension arranged at least partially therein, the upper core extension being configured to move between a fixed position, whereby the mandrel is maintained in the engaged configuration, and an unfixed position, whereby the mandrel is able to move to the disengaged configuration, and an impact tool coupled to a distal end of the mandrel and being configured to deliver an impact force to a downhole obstruction when the mandrel is moved to the disengaged configuration.
    • 公开了一种用于提供大的井下冲击力的冲击产生工具。 冲击发生器可以包括具有上孔端和井下端并且在其中在上孔和井下端之间限定腔室的壳体;心轴可移动地至少部分地布置在腔室内的啮合构型和脱开构型之间,顶部副联接 在所述井眼端部处的所述壳体并且具有至少部分地设置在其中的上芯部延伸部,所述上芯部延伸部构造成在固定位置之间移动,由此所述心轴保持在所述接合构型中,并且所述心轴 能够移动到分离构造,以及联接到心轴的远端的冲击工具,并且构造成当心轴移动到脱离构型时将冲击力传递到井下障碍物。
    • 8. 发明公开
    • ANCHOR ASSEMBLY AND METHOD FOR ANCHORING A DOWNHOLE TOOL
    • VERFAHREN ZUR VERANKERUNG EANES BOHRLOCHWERKZEUGS
    • EP2483517A1
    • 2012-08-08
    • EP09849920.5
    • 2009-09-28
    • Halliburton Energy Services, Inc.
    • CLEMENS, Jack, GammillLUDWIG, Wesley, NeilRODGERS, John, P.EATON, EdSERRA, Marco
    • E21B23/00E21B33/12E21B33/13E21B49/00
    • E21B33/1208E21B23/01E21B23/06E21B33/128E21B33/134E21B33/136
    • An anchor assembly (400) for anchoring a downhole tool in a wellbore tubular. The anchor assembly (400) includes a plurality of slip arm assemblies each having first and second arms (412, 414) hingeably coupled together. The first and second arms (412, 414) each have teeth (418, 426) on one end. A first sleeve (402) is rotatably associated with each of the first arms (412) and a second sleeve (404) is rotatably associated with each of the second arms (414) such that the anchor assembly (400) has a running configuration in which the slip arm assemblies are substantially longitudinally oriented and an operating configuration in which the first and second arms (412, 414) of each slip arm assembly form an acute angle relative to one another such that the teeth (418, 426) of the first and second arms (412, 414) define the radially outermost portion of the anchor assembly (100).
    • 一种锚固组件(400),用于将井下工具锚定在井筒管中。 锚固组件(400)包括多个滑动臂组件,每个滑动臂组件具有可铰接地联接在一起的第一和第二臂(412,414)。 第一和第二臂(412,414)在一端各自具有齿(418,426)。 第一套筒(402)可旋转地与每个第一臂(412)相关联,并且第二套筒(404)可旋转地与每个第二臂(414)相关联,使得锚固组件(400)具有在 其中滑动臂组件基本上纵向定向,并且操作构造,其中每个滑动臂组件的第一和第二臂(412,414)相对于彼此形成锐角,使得第一 并且第二臂(412,414)限定锚固组件(100)的径向最外部分。
    • 9. 发明申请
    • JARRING SYSTEMS AND METHODS OF USE
    • 延迟系统和使用方法
    • WO2014178825A1
    • 2014-11-06
    • PCT/US2013/038715
    • 2013-04-30
    • HALLIBURTON ENERGY SERVICES, INC.
    • MLCAK, Matthew, CraigCLEMENS, Jack, Gammill
    • E21B31/107E21B4/14
    • E21B31/107
    • Disclosed are embodiments of an adjustable jar and accelerator system and methods of use thereof. One exemplary jarring system includes a jar having a first processor configured to determine a release point of the jar, an accelerator operatively coupled to the jar and having a second processor communicably coupled to the first processor via a communication line, the second processor being configured to determine a spring rate and stroke of the accelerator, and an impact recording device operatively coupled to the jar and having a third processor communicably coupled to one or both of the first and second processors.
    • 公开了可调节罐和加速器系统的实施例及其使用方法。 一个示例性的震动系统包括具有第一处理器的罐,该第一处理器被配置为确定罐的释放点,可操作地耦合到罐的加速器,并具有经由通信线路可通信地耦合到第一处理器的第二处理器,第二处理器被配置为 确定加速器的弹簧速率和冲程,以及可操作地耦合到所述罐并具有可通信地耦合到所述第一和第二处理器中的一个或两者的第三处理器的冲击记录装置。