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    • 1. 发明申请
    • MUD POWERED INERTIA DRIVE OSCILLATING PULSER
    • MUD POWERED INERTIA驱动振荡器
    • WO2013048374A1
    • 2013-04-04
    • PCT/US2011/053476
    • 2011-09-27
    • HALLIBURTON ENERGY SERVICES, INC.SITKA, Mark AnthonySHERRILL, KristopherWINSLOW, Daniel
    • SITKA, Mark AnthonySHERRILL, KristopherWINSLOW, Daniel
    • G01V1/40
    • E21B47/187
    • In a general aspect, a mud pulse telemetry tool is used in a drill string that has a drilling fluid flowing inside. The mud pulse telemetry tool may include a pulser disposed in the drill string and a drive system for driving the pulser. The pulser may include a non-rotating mud pulse stator and a mud pulse rotor disposed proximate to the stator. The drive system may include a turbine stator, a turbine rotor, and a rotatable inertial member magnetically coupled to the turbine rotor. The inertial member may be operatively connected at a first end to the mud pulse rotor. In some specific aspects, in the mud pulse telemetry tool, rotational energy may be transmitted from the turbine rotor to the rotatable inertial member by a magnetic coupling. The rotatable inertial member may be operatively connected at a second end to a supplemental motor that is adapted to supplement rotational energy imparted to the rotatable inertial member by the drive system.
    • 在一般情况下,泥浆脉冲遥测工具用于钻井液中流动的钻井液。 泥浆脉冲遥测工具可以包括布置在钻柱中的脉冲发生器和用于驱动脉冲发生器的驱动系统。 脉冲发生器可以包括非旋转泥浆脉冲定子和靠近定子设置的泥浆脉冲转子。 驱动系统可以包括涡轮机定子,涡轮转子和磁耦合到涡轮转子的可旋转惯性部件。 惯性构件可以在第一端处可操作地连接到泥浆脉冲转子。 在一些具体方面,在泥浆脉冲遥测工具中,旋转能量可以通过磁耦合从涡轮转子传递到可旋转的惯性构件。 可旋转惯性构件可以在第二端处可操作地连接到辅助马达,辅助马达适于补充由驱动系统施加到可旋转惯性构件的旋转能量。
    • 2. 发明申请
    • FLUID-DRIVEN POWER GENERATION UNIT FOR A DRILL STRING ASSEMBLY
    • 用于钻井组件的流体驱动发电机组
    • WO2013191688A1
    • 2013-12-27
    • PCT/US2012/043288
    • 2012-06-20
    • HALLIBURTON ENERGY SERVICES, INC.WINSLOW, Daniel MartinSAVAGE, John Keith
    • WINSLOW, Daniel MartinSAVAGE, John Keith
    • E21B4/14E21B17/07E21B19/09
    • E21B41/00E21B4/16E21B41/0085
    • Multi-functional fluid-driven power generation units, modular power generation units, and drilling systems with a power generation unit are presented herein. A power generation unit for powering one or more downhole tools in a drill string is disclosed. The power generation unit includes a housing that is configured to couple to a downhole portion of the drill string and receive at least a portion of fluid flowing through the drill string. The power generation unit also includes a fluid-driven motor assembly with a drive shaft configured to output rotational drive forces generated by the motor assembly. An electrical generator is operatively coupled to the drive shaft and configured to convert the rotational drive forces generated by the motor assembly into electrical power. In addition, a hydraulic pump is operatively coupled to the drive shaft and configured to convert the rotational drive forces generated by the motor assembly into hydraulic power.
    • 本文介绍了多功能流体驱动发电机组,模块化发电机组和具有发电机组的钻井系统。 公开了一种用于为钻柱中的一个或多个井下工具供电的发电单元。 发电单元包括壳体,其被构造成联接到钻柱的井下部分并且接收流过钻柱的至少一部分流体。 发电单元还包括具有驱动轴的流体驱动马达组件,驱动轴构造成输出由马达组件产生的旋转驱动力。 发电机可操作地联接到驱动轴并且构造成将由电动机组件产生的旋转驱动力转换为电力。 此外,液压泵可操作地联接到驱动轴并且构造成将由马达组件产生的旋转驱动力转换成液压动力。
    • 3. 发明申请
    • APPARATUS AND METHOD FOR FRILLING A WELL
    • 装置和方法
    • WO2012158144A1
    • 2012-11-22
    • PCT/US2011036379
    • 2011-05-13
    • HALLIBURTON ENERGY SERV INCWINSLOW DANIEL MDEOLALIKAR NEELESH
    • WINSLOW DANIEL MDEOLALIKAR NEELESH
    • E21B7/04
    • E21B7/068E21B7/04E21B7/067
    • A method for forming a controllable bend angle in a drill string in a wellbore comprises attaching an upper housing to a drill string. At least, one drive motor is anchored in the upper housing. A. middle housing is operably coupled to the at least one drive motor. A lower housing is operably coupled to the at least one drive motor. The at least one drive motor is controHabiy operated to rotate the middle housing by a first rotation angle with respect to the upper.housing, and to rotate the lower housing by a second rotation angle with respect to the upper housing, to generate a desired bend angle between the middle housing and the lower housing at a target toolfaee orientation between the bend angle and the upper housing.
    • 在井筒中的钻柱中形成可控弯曲角度的方法包括将上壳体附接到钻柱。 至少有一个驱动电机固定在上壳体中。 中间壳体可操作地联接到至少一个驱动马达。 下壳体可操作地联接到至少一个驱动马达。 所述至少一个驱动马达被控制操作以使所述中间壳体相对于所述上部壳体旋转第一旋转角度,并且使所述下部壳体相对于所述上部壳体旋转第二旋转角度,以产生期望的弯曲 在中间壳体和下壳体之间的角度处于弯曲角度和上壳体之间的目标工具箱方位。
    • 4. 发明申请
    • ROTARY STEERABLE DRILLING SYSTEM
    • 旋转导向钻机系统
    • WO2014042644A1
    • 2014-03-20
    • PCT/US2012/055327
    • 2012-09-14
    • HALLIBURTON ENERGY SERVICES, INC.SAVAGE, John KeithWINSLOW, Daniel Martin
    • SAVAGE, John KeithWINSLOW, Daniel Martin
    • E21B7/04E21B17/02
    • E21B7/06E21B7/062
    • A rotary steerable drilling system includes a housing, a drive shaft passing through the housing, a shaft/housing locking mechanism disposed to selectively engage the drive shaft and the housing, and an anti-rotation mechanism disposed to engage a wellbore wall. Shaft/housing locking mechanism includes a first configuration in which rotation of the drive shaft is independent of the housing, and a second configuration in which rotation of the drive shaft causes rotation of the housing. Anti-rotation mechanism includes a first configuration in which the anti-rotation mechanism extends radially relative to the drive shaft, and a second configuration in which the anti-rotation mechanism retracts from engagement with the wellbore wall. A timing mechanism may be employed to transition the anti-rotation mechanism from the first configuration to the second configuration before the shaft/housing locking mechanism transitions from the first configuration to the second configuration.
    • 旋转导向钻井系统包括壳体,穿过壳体的驱动轴,设置成选择性地接合驱动轴和壳体的轴/壳体锁定机构,以及设置成接合井眼壁的防旋转机构。 轴/壳体锁定机构包括其中驱动轴的旋转独立于壳体的第一构造,以及驱动轴的旋转引起壳体旋转的第二构造。 防旋转机构包括第一构造,其中防旋转机构相对于驱动轴径向延伸,以及第二构造,其中防旋转机构从与井眼壁的接合中缩回。 在轴/壳体锁定机构从第一配置转变到第二配置之前,可以采用定时机构来将防旋转机构从第一配置转变到第二配置。
    • 8. 发明申请
    • DOWNHOLE POWER GENERATION USING HYDRAULIC FLOW REGULATION
    • 使用液压流量调节的井下发电
    • WO2014011175A1
    • 2014-01-16
    • PCT/US2012/046447
    • 2012-07-12
    • HALLIBURTON ENERGY SERVICES, INC.WINSLOW, Daniel, M.
    • WINSLOW, Daniel, M.
    • E21B41/00H02N2/18
    • E21B41/0085H02K7/1807H02P9/06
    • Systems and methods of downhole power generation are disclosed, which provide for the generation of electrical power in a downhole environment by the use of an electrical generator coupled to a hydraulic circuit that receives energy from a source in the downhole environment, The hydraulic circuit can receive energy from flowing drilling fluid and/or from kinetic energy of one or more portions of the drill string. A direct or indirect coupling can be used to transfer energy from the downhole environment to a pump in the hydraulic circuit, which can act as a hydraulic flow source, providing flow through a flow regulation device or control circuit. The hydraulic fluid under such control can then be used to turn a hydraulic motor, which is used to turn an electric generator for the generation of electricity for downhole tools such as logging tools, related telemetry, and the like.
    • 公开了井下发电的系统和方法,其通过使用耦合到在井下环境中从源接收能量的液压回路的发电机在井下环境中产生电力。液压回路可以接收 流动的钻井液的能量和/或来自钻柱的一个或多个部分的动能。 可以使用直接或间接耦合将能量从井下环境传递到液压回路中的泵,其可以用作液压流动源,从而提供通过流量调节装置或控制电路的流量。 在这种控制下的液压流体然后可用于转动用于转动发电机以产生用于诸如测井工具,相关遥测等井下工具的电力的液压马达。
    • 9. 发明申请
    • DOWNHOLE WELL TOOL AND COOLER THEREFOR
    • 井下工具和冷却器
    • WO2011078868A1
    • 2011-06-30
    • PCT/US2009/069450
    • 2009-12-23
    • HALLIBURTON ENERGY SERVICES, INC.WINSLOW, Daniel
    • WINSLOW, Daniel
    • E21B36/00F25B39/02
    • E21B36/001F25B39/02
    • A well tool can include a well tool housing and a cooling section positioned within the well tool housing, the cooling section including a helical cooling fluid flow path, and the flow path having a reversal of direction proximate an end of the cooling section. Another well tool can include a cooling fluid which flows through the helical flow path toward the end of the cooling section in one direction, and which flows through the helical flow path away from the end of the cooling section in an opposite direction. Another well tool can include the cooling fluid which flows through the helical flow path, and which makes multiple passes longitudinally through the cooling section proximate a heat-sensitive device.
    • 井工具可以包括井工具壳体和位于井工具壳体内的冷却段,冷却段包括螺旋形冷却流体流动路径,并且流路具有靠近冷却段端部的方向反转。 另一个好的工具可以包括冷却流体,该冷却流体沿着一个方向流过冷却部分的端部,并且沿相反方向流过冷却部分的端部的螺旋形流动路径。 另一个好的工具可以包括流过螺旋流动路径的冷却流体,并且使多个通道纵向穿过靠近热敏装置的冷却部分。