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    • 3. 发明授权
    • System and methods using fiber optics in coiled tubing
    • 在连续油管中使用光纤的系统和方法
    • US07617873B2
    • 2009-11-17
    • US11135314
    • 2005-05-23
    • John R. LovellMichael G. GaySarmad AdnanKean Zemlak
    • John R. LovellMichael G. GaySarmad AdnanKean Zemlak
    • E21B47/01E21B23/14
    • E21B17/206E21B47/123
    • Apparatus having a fiber optic tether disposed in coiled tubing for communicating information between downhole tools and sensors and surface equipment and methods of operating such equipment. Wellbore operations performed using the fiber optic enabled coiled tubing apparatus includes transmitting control signals from the surface equipment to the downhole equipment over the fiber optic tether, transmitting information gathered from at least one downhole sensor to the surface equipment over the fiber optic tether, or collecting information by measuring an optical property observed on the fiber optic tether. The downhole tools or sensors connected to the fiber optic tether may either include devices that manipulate or respond to optical signal directly or tools or sensors that operate according to conventional principles.
    • 具有设置在连续油管中用于在井下工具和传感器之间传递信息的光纤系绳的装置以及操作这种设备的表面设备和方法。 使用光纤启用的连续油管装置执行的井眼操作包括将来自地面设备的控制信号传输到光纤系统上的井下设备,将从至少一个井下传感器收集的信息传输到光纤系统上的地面设备,或收集 通过测量在光纤系统上观察到的光学性质的信息。 连接到光纤系统的井下工具或传感器可以包括直接操纵或响应光信号的装置或者根据常规原理操作的工具或传感器。
    • 5. 发明授权
    • Well servicing methods and systems
    • 良好的维修方法和系统
    • US08573313B2
    • 2013-11-05
    • US11278512
    • 2006-04-03
    • John R. LovellSarmad AdnanJospeh A. AyoubMichael G. Gay
    • John R. LovellSarmad AdnanJospeh A. AyoubMichael G. Gay
    • E21B47/00E21B23/08E21B33/05E21B23/14
    • E21B23/14E21B19/22E21B33/05E21B33/072
    • Well servicing methods and systems are described, in one embodiment comprising a pressure containment housing fluidly connected directly to a wellhead of a wellbore, and a reel positioned inside the housing on which is spooled a communication line. One method comprises introducing the communication line into the pressurized wellbore without a well control stack, the communication line being introduced and driven into the wellbore by controlling a reel, the reel being internal to a pressurized housing removably connected directly to a wellhead of the wellbore. Fluid flow may move the communication line to a desired location in the wellbore. This abstract allows a searcher or other reader to quickly ascertain the subject matter of the disclosure. It may not be used to interpret or limit the scope or meaning of the claims. 37 CFR 1.72(b)
    • 在一个实施例中,描述了良好的维修方法和系统,该实施例包括直接流体连接到井筒的井口的压力容纳壳体,以及定位在壳体内的卷轴上的通信线路的卷轴。 一种方法包括将通信线路引入加压井筒中,而没有井控制堆叠,通过控制卷轴将通信线路引入并驱动到井眼中,该卷轴在可拆卸地直接连接到井筒的井口的加压壳体的内部。 流体流动可以将通信线路移动到井眼中的期望位置。 该摘要允许搜索者或其他读者快速确定本公开的主题。 它不能用于解释或限制权利要求的范围或含义。 37 CFR 1.72(b)
    • 6. 发明申请
    • WELL SERVICING METHODS AND SYSTEMS
    • 良好的维修方法和系统
    • US20070227741A1
    • 2007-10-04
    • US11278512
    • 2006-04-03
    • John R. LovellSarmad AdnanJoseph A. AyoubMichael G. Gay
    • John R. LovellSarmad AdnanJoseph A. AyoubMichael G. Gay
    • E21B19/00
    • E21B23/14E21B19/22E21B33/05E21B33/072
    • Well servicing methods and systems are described, in one embodiment comprising a pressure containment housing fluidly connected directly to a wellhead of a wellbore, and a reel positioned inside the housing on which is spooled a communication line. One method comprises introducing the communication line into the pressurized wellbore without a well control stack, the communication line being introduced and driven into the wellbore by controlling a reel, the reel being internal to a pressurized housing removably connected directly to a wellhead of the wellbore. Fluid flow may move the communication line to a desired location in the wellbore. This abstract allows a searcher or other reader to quickly ascertain the subject matter of the disclosure. It may not be used to interpret or limit the scope or meaning of the claims.
    • 在一个实施例中,描述了良好的维修方法和系统,该实施例包括直接流体连接到井筒的井口的压力容纳壳体,以及定位在壳体内的卷轴上的通信线路的卷轴。 一种方法包括将通信线路引入加压井筒中,而没有井控制堆叠,通过控制卷轴将通信线路引入并驱动到井眼中,该卷轴在可拆卸地直接连接到井筒的井口的加压壳体的内部。 流体流动可以将通信线路移动到井眼中的期望位置。 该摘要允许搜索者或其他读者快速确定本公开的主题。 它不能用于解释或限制权利要求的范围或含义。
    • 9. 发明授权
    • Multi-cycle dump valve
    • 多循环卸料阀
    • US07090020B2
    • 2006-08-15
    • US10671275
    • 2003-09-25
    • Stephen D. HillRobert BucherL. Michael McKeeMark C. OettliMichael G. Gay
    • Stephen D. HillRobert BucherL. Michael McKeeMark C. OettliMichael G. Gay
    • E21B34/06
    • E21B23/006E21B33/124E21B34/08E21B34/14E21B43/26
    • A flow responsive dump valve mechanism for a straddle packer tool and has a valve controlled flow passage from which underflushed fluid, typically well treatment slurry, in a conveyance and fluid supplying tubing string can be dumped into a well casing. The dump valve mechanism incorporates a ratcheting power piston, an indexing mechanism and high and low load energy storage systems to accomplish open, closed and intermediate dump valve positions. The intermediate position increases the functionality of the tool by preventing accidental closure either due to the free fall of fluid through the coiled tubing or during flushing of the tool and permits the flow rate to be increased for thorough cleaning of the straddle tool and coiled tubing. For energy storage, a light compression spring provides power to cycle the indexing mechanism. Heavier load disc springs (Bellville Washers) are used to provide power for the ratcheting power piston to open the valve.
    • 一种用于跨越式封隔器工具的流量响应式排放阀机构,并且具有阀控流动通道,输送和流体供应管柱中的未冲洗流体(通常为良好的处理浆料)可从该管道流入井套管。 倾卸阀机构包括棘轮动力活塞,分度机构以及高低负荷能量储存系统,以实现打开,关闭和中间卸料阀位置。 中间位置通过防止由于液体通过连续油管的自由下落或在冲洗工具期间的意外关闭而增加了工具的功能,并允许提高流速以彻底清洁跨工具和连续油管。 对于能量储存,轻压弹簧提供动力以循环分度机构。 更重的负载碟形弹簧(Bellville Washers)用于为棘轮动力活塞提供动力来打开阀门。