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    • 3. 发明申请
    • REMOTELY OPERATED AND MULTI-FUNCTIONAL DOWN-HOLE CONTROL TOOLS
    • 远程操作和多功能下阀控制工具
    • WO2017058258A1
    • 2017-04-06
    • PCT/US2015/053796
    • 2015-10-02
    • HALLIBURTON ENERGY SERVICES, INC.
    • RICHARDS, William M.
    • E21B41/00E21B47/12E21B23/00
    • E21B23/00E21B34/066E21B41/0085E21B43/04E21B43/12E21B47/12
    • A system for controlling flow in a wellbore can include a down-hole control module that is hydraulically coupled to multiple components of the system. The control module can include a computer, which can be preprogrammed to operate the various components in a particular sequence, and communicate confirmation or error signals to a surface location. The control module can also include a micro-hydraulic motor and pump that can that can be instructed by the computer to selectively deliver hydraulic fluid to one or more of the components of the system. The system can include isolation members such as packers, hydraulic pressure maintenance devices (PMDs), hydraulic sheer joints, inflow control devices or valves (ICDs or ICVs) and a multi-position valve that can be actuated by the control module without necessitating communication with a surface location.
    • 用于控制井眼中的流动的系统可以包括液压耦合到系统的多个部件的井下控制模块。 控制模块可以包括计算机,其可以被预编程以按特定顺序操作各种组件,并将确认或错误信号传送到表面位置。 控制模块还可以包括微型液压马达和泵,其可以被计算机指示以选择性地将液压流体输送到系统的一个或多个部件中。 该系统可以包括隔离构件,例如封隔器,液压维护装置(PMD),液压剪切接头,流入控制装置或阀(ICD或ICV)以及可由控制模块致动的多位置阀,而不需要与 表面位置。
    • 10. 发明申请
    • DRILLING TURBINE POWER GENERATION
    • 钻井发电机组
    • WO2015191256A1
    • 2015-12-17
    • PCT/US2015/031657
    • 2015-05-20
    • HALLIBURTON ENERGY SERVICES, INC.
    • DOWNIE, Andrew McPhersonCRAMPTON, Christopher PaulGAWSKI, Victor
    • E21B41/00F03B13/02
    • E21B41/0085E21B4/02F03B13/02
    • An example drilling turbine includes a turbine power section having a turbine shaft and a plurality of turbine stages axially arranged along the turbine shaft. A turbine bearing section is coupled to the turbine power section and has a drive shaft operatively coupled to the turbine shaft such that rotation of the turbine shaft rotates the drive shaft. The turbine bearing section includes a lower mandrel that houses a portion of the drive shaft rotatable with respect to the lower mandrel, one or more magnets disposed on an inner surface of the lower mandrel, a generator coil coupled to the drive shaft and aligned with the magnets, and one or more sensors coupled to the drive shaft and in electrical communication with the generator coil. The turbine shaft rotates the drive shaft, which rotates the generator coil with respect to the magnets, and thereby generates electrical power for the sensors.
    • 示例性钻井涡轮机包括具有涡轮机轴的涡轮动力部分和沿着涡轮轴轴向布置的多个涡轮级。 涡轮机轴承部分联接到涡轮动力部分并且具有可操作地联接到涡轮轴的驱动轴,使得涡轮轴的旋转使驱动轴旋转。 涡轮机轴承部分包括下心轴,其容纳相对于下心轴可旋转的驱动轴的一部分,设置在下心轴的内表面上的一个或多个磁体,联接到驱动轴并与驱动轴对准的发电机线圈 磁体和耦合到驱动轴并与发电机线圈电连通的一个或多个传感器。 涡轮轴转动驱动轴,其使发电机线圈相对于磁体旋转,从而为传感器产生电力。