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    • 2. 发明申请
    • SYNCHRONOUS CONTINUOUS CIRCULATION SUBASSEMBLY WITH FEEDBACK
    • 同步连续循环下载反馈
    • WO2015047418A1
    • 2015-04-02
    • PCT/US2013/062730
    • 2013-09-30
    • HALLIBURTON ENERGY SERVICES, INC.
    • GOSNEY, Jon Troy
    • E21B21/08E21B47/26
    • E21B21/106E21B21/08E21B2034/002
    • A system for continuously circulating fluid in a wellbore includes a control system comprising a memory, a power source, and a user interface, along with a drill string subassembly having an inlet and an outlet, and defining a flow path from the inlet to the outlet. The conduit includes a lateral port to the flow path between the inlet and the outlet. The drill string subassembly also as a first valve that controls flow to the flow path from the lateral port and a second valve that controls flow to the flow path from the inlet. The drill string subassembly may also include a sensor that generates a fluid coupling signal responsive to a coupling between the lateral port and secondary fluid supply source, and includes a synchronous actuation member configured open the first valve and close the second valve in response to, for example, the fluid coupling signal.
    • 用于在井筒中连续循环流体的系统包括包括存储器,动力源和用户界面的控制系统以及具有入口和出口的钻柱子组件,并且限定从入口到出口的流动路径 。 导管包括到入口和出口之间的流动路径的侧向端口。 钻柱子组件还作为控制从侧向端口流向流动路径的第一阀和控制从入口到流动路径的流量的第二阀。 钻柱子组件还可以包括响应于侧向端口和次级流体供应源之间的联接而产生流体耦合信号的传感器,并且包括构造成打开第一阀并且关闭第二阀的同步致动构件,以响应于 例如,流体耦合信号。
    • 4. 发明申请
    • EXTRACTION CLEANER AND GAS SYSTEM CHECK
    • 提取清洁剂和气体系统检查
    • WO2017069765A1
    • 2017-04-27
    • PCT/US2015/056949
    • 2015-10-22
    • HALLIBURTON ENERGY SERVICES INC.
    • GOSNEY, Jon TroyROWE, Mathew Dennis
    • E21B49/08E21B21/06E21B43/34
    • E21B21/06E21B49/08
    • Systems and methods for maintaining operation of gas sampling equipment utilized in oil and gas operations, wherein an isolation valve is deployed along a gas extraction conduit in order to isolate a gas analysis system from pressurized fluid that may be injected into the extraction conduit from a fluid delivery system. A parameter of the flow stream, such as a particular gas content or the presence of a bump gas, may be monitored. A change in the parameter may be indicative that debris is inhibiting fluid flow into the extraction conduit. When such a condition is suspected, gas sampling is suspended and the valve between the gas analysis system and the intake of the extraction conduit is closed. With the valve closed in order to protect the gas analysis system, a fluid is injected into the extraction conduit from the fluid delivery system.
    • 用于维持油气操作中使用的气体采样设备的操作的系统和方法,其中隔离阀沿着气体抽取导管部署以便将气体分析系统与可能是加压流体的气体分析系统隔离 从流体输送系统注入提取导管。 可以监测流动流的参数,例如特定的气体含量或者存在凸起气体。 参数的改变可能表明碎片正在阻止流体流入抽取导管。 当怀疑这种情况时,气体采样被暂停,并且气体分析系统和抽取导管入口之间的阀门关闭。 在阀关闭以保护气体分析系统时,将流体从流体输送系统注入提取导管。
    • 8. 发明申请
    • GAS ISOTOPE ANALYSIS
    • 气体同位素分析
    • WO2018071029A1
    • 2018-04-19
    • PCT/US2016/056848
    • 2016-10-13
    • HALLIBURTON ENERGY SERVICES, INC.
    • ROWE, Mathew DennisGOSNEY, Jon Troy
    • E21B49/08G01N30/72G01N33/00G01N30/88
    • Systems and methods are provided for analyzing isotopes of a gas from a wellbore to determine geological information associated with the wellbore. A drill device can be used to drill rocks or particles in a wellbore, which can cause a gas to be released within the wellbore. Fluid can be pumped into the wellbore as the drill bit drills the rocks or particles and the fluid, along with the gas released, can flow through the wellbore and to a surface of the wellbore. A gas detector can be positioned near the wellbore for detecting an amount of gas and a type of gas in the fluid and gas mixture and transmitting data about the amount and type of the gas to a computing device. The computing device can output data based on the amount and type of gas in the mixture for determining geological information about the wellbore.
    • 提供系统和方法用于分析来自井眼的气体的同位素以确定与井筒相关的地质信息。 钻探装置可用于在井眼中钻出岩石或颗粒,这可能导致气体在井眼内被释放。 随着钻头钻出岩石或颗粒,流体可以被泵入井筒中,并且流体与释放的气体一起可以流过井筒并流到井眼表面。 气体检测器可以定位在井眼附近,用于检测流体和气体混合物中的气体量和气体种类,并将关于气体量和类型的数据传输到计算设备。 计算设备可以基于混合物中气体的量和类型输出数据以确定关于井眼的地质信息。
    • 10. 发明申请
    • METHODS AND SYSTEMS FOR MAINTAINING OPTICAL TRANSPARENCY DURING PARTICLE IMAGE ACQUISITION
    • 在颗粒图像采集期间维持光学透明度的方法和系统
    • WO2016148671A1
    • 2016-09-22
    • PCT/US2015/020348
    • 2015-03-13
    • HALLIBURTON ENERGY SERVICES, INC.
    • ROWE, Mathew DennisGOSNEY, Jon Troy
    • E21B47/002G01V8/02G01V13/00
    • G01N21/15E21B47/0002G01N15/0227G01N15/1459G01N2015/0053G01N2021/152G01N2021/157G01V8/02G02B27/0006H04N5/332
    • Fouling of or damage to an electromagnetic radiation-transparent window can preclude one from obtaining satisfactory images with an image acquisition unit, such as a camera. Certain types of environments may be particularly prone toward promoting fouling or damage, and manual cleaning or repair of an electromagnetic radiation-transparent window may be difficult in some circumstances. These issues may be particularly prevalent when imaging drill cuttings and other solids obtained from a wellbore due to the complex sampling environment in which these solids are often disposed. Wellhead imaging systems can comprise: a flow pathway extending from a wellbore; an electromagnetic radiation-transparent window external to the wellbore establishing optical communication with the flow pathway; an image acquisition unit in optical communication with the flow pathway via the electromagnetic radiation-transparent window; and a movable barrier that is also electromagnetic radiation-transparent and is disposed between the electromagnetic radiation-transparent window and the flow pathway.
    • 对电磁辐射透明窗口的污染或损坏可以排除一个使用诸如照相机的图像获取单元获得令人满意的图像。 某些类型的环境可能特别容易促进结垢或损坏,并且在某些情况下手动清洁或修复电磁辐射透明窗可能是困难的。 当成像钻屑和从井眼获得的其它固体时,由于常常处置这些固体的复杂取样环境,这些问题可能是特别普遍的。 井口成像系统可以包括:从井筒延伸的流动路径; 在井筒外部的电磁辐射透明窗口与流动路径建立光学通信; 图像获取单元,经由电磁辐射透明窗口与流动路径光学通信; 以及也是电磁辐射透明的并且设置在电磁辐射透明窗和流动通道之间的可移动屏障。