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    • 24. 发明申请
    • DOWNHOLE TENSION SENSING APPARATUS
    • 井下张力传感装置
    • WO2017132272A1
    • 2017-08-03
    • PCT/US2017/014964
    • 2017-01-25
    • IMPACT SELECTOR INTERNATIONAL, LLC
    • HARRIGAN, Edward
    • E21B47/007
    • E21B47/0006
    • An apparatus having a downhole tool for coupling between opposing portions of a downhole tool string. The downhole tool includes a load cell (206) connected along a tension-bearing member (234) of the downhole tool and operable to generate a signal indicative of tension applied to the downhole tool. The downhole tool further comprises an electronic device (204) operable to receive the signal indicative of the tension. The apparatus further comprises a perforating tool for coupling within the tool string and operable to perforate at least a portion of a subterranean formation surrounding a wellbore.
    • 具有用于在井下工具串的相对部分之间进行耦合的井下工具的装置。 井下工具包括沿着井下工具的张力承载构件(234)连接并且可操作以产生指示施加到井下工具的张力的信号的测力传感器(206)。 井下工具还包括可操作以接收指示张力的信号的电子装置(204)。 该设备还包括用于连接在工具管柱内并可操作以穿透围绕井筒的地下地层的至少一部分的穿孔工具。
    • 25. 发明申请
    • DOWNHOLE IMPACT APPARATUS
    • 井下冲击装置
    • WO2017087504A1
    • 2017-05-26
    • PCT/US2016/062249
    • 2016-11-16
    • IMPACT SELECTOR INTERNATIONAL, LLC
    • MASSEY, PaulWILSON, ThomasSAVILLE, Edward
    • E21B31/113E21B17/06
    • E21B31/113E21B17/06
    • An apparatus and method for performing a downhole impact operation. The apparatus comprising: an impact tool (200) operable to be coupled between opposing first (206) and second (210) portions of a downhole tool string and conveyed within a wellbore, wherein the impact tool comprises: a housing (202); a chamber (214) within the housing (202); a piston (220) slidably disposed within the chamber (214) and dividing the chamber into a first chamber volume (222) and a second chamber volume (224), wherein the first chamber volume (222) is open to a space external to the housing (202), and wherein the second chamber volume (224) is fluidly isolated from the space external to the housing (202); and a shaft (240) connected with the piston (220) and axially movable with respect to the housing (202).
    • 用于执行井下冲击操作的装置和方法。 所述设备包括:冲击工具(200),所述冲击工具可操作以联接在井下工具管柱的相对的第一部分(206)和第二部分(210)之间并在井筒内输送,其中所述冲击工具包括:壳体(202); 在壳体(202)内的腔室(214); 可滑动地设置在腔室(214)内并将腔室分成第一腔室容积(222)和第二腔室容积(224)的活塞(220),其中第一腔室容积(222)通向第二腔室容积 (202),并且其中所述第二腔室容积(224)与所述壳体(202)外部的所述空间流体隔离; 和与活塞(220)连接并且可相对于壳体(202)轴向移动的轴(240)。
    • 26. 发明申请
    • WIRELINE ROLLER STANDOFF
    • WO2015013538A2
    • 2015-01-29
    • PCT/US2014/048066
    • 2014-07-24
    • IMPACT SELECTOR, INC.
    • HRADECKY, Jason Allen
    • E21B23/00
    • E21B17/1057E21B23/14
    • Apparatus comprising a gripper operable to grip a cable extending between the Earth's surface and a downhole tool, wherein the downhole tool is suspended in a wellbore that extends from the Earth's surface to one or more subterranean formations. A body is assembled to the gripper. A plurality of rolling elements are each rotatably coupled to the body and operable to rotate relative to the body in response to contact with a sidewall of the wellbore as the body is translated along the wellbore. The body and the plurality of rolling elements collectively rotate relative to the gripper and, thus, the cable.
    • 包括夹具的装置,其可操作地夹持在地球表面和井下工具之间延伸的缆索,其中井下工具悬挂在从地球表面延伸到一个或多个地下地层的井筒中。 身体被组装到夹具上。 多个滚动元件各自可旋转地联接到主体并且当主体沿井身平移时响应于与井筒的侧壁接触而相对于主体旋转。 主体和多个滚动元件相对于夹具共同旋转,因此共同地旋转。
    • 29. 发明申请
    • WELL PROG EXECUTION FACILITATION SYSTEM AND METHOD
    • 良好的执行执行系统和方法
    • WO2008140939A1
    • 2008-11-20
    • PCT/US2008/061997
    • 2008-04-30
    • NABORS GLOBAL HOLDINGS, LTD.BOONE, Scott, G.
    • BOONE, Scott, G.
    • G01V1/40
    • E21B44/00G05B15/02
    • A prog analysis and execution system and method. The system includes a computer control system, an interface engine in communication with the computer control system, the interface engine being configured to receive prog information, and an action item development engine in communication with the control system, the action item development engine being configured to analyze received prog information and to determine corresponding action items. The system further includes a sensor engine in communication with the computer control system, the sensor engine being configured to receive input from at least one sensor for use in controlling a well drilling operation, and an operational equipment engine in communication with the computer control system, the operational equipment engine being configured to receive input from the computer control system and to control the well drilling operation in accordance with the determined action items in the prog.
    • 进度分析和执行系统和方法。 该系统包括计算机控制系统,与计算机控制系统通信的接口引擎,接口引擎被配置为接收prog信息,以及与控制系统通信的动作项目开发引擎,动作项目开发引擎被配置为 分析收到的进度信息并确定相应的动作项目。 所述系统还包括与所述计算机控制系统通信的传感器引擎,所述传感器引擎被配置为从至少一个传感器接收用于控制钻井操作的输入,以及与所述计算机控制系统通信的操作设备引擎, 所述操作设备引擎被配置为从所述计算机控制系统接收输入并且根据所确定的进程中的动作项来控制所述钻井操作。