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    • 8. 发明申请
    • METHODS FOR CUTTINGS FOR A WIRELINE DRILLING TOOL
    • 丝线钻孔刀具切割方法
    • US20100294569A1
    • 2010-11-25
    • US12742477
    • 2008-11-14
    • Walter AldredIain CooperPaul Hammond
    • Walter AldredIain CooperPaul Hammond
    • E21B21/00E21B7/00
    • E21B21/00E21B4/04E21B7/068E21B41/0035E21B2021/006
    • A method of removing cuttings from a workfront of a lateral borehole hole being drilled from a main borehole by a drilling tool is provided. The drilling tool comprising a tool body including a motor, an axial drive mechanism for advancing the tool body in the well, and a drill bit powered by the motor for drilling the underground formation at the workface and producing cuttings as the tool is advanced. The drilling tool is preferably connected to the surface by means of a cable extending through the lateral borehole and main borehole. The method independently comprising transporting the drilled cuttings from the workface to the part of the lateral borehole immediately behind the drilling tool. Transporting the drilled cuttings from immediately behind the drilling tool to the junction of the lateral borehole and the main well. And transporting the cuttings from the junction to a place of disposal.
    • 提供了一种从钻孔工具从主钻孔钻出的横向井眼孔的工作面去除切屑的方法。 所述钻具包括工具主体,所述工具主体包括马达,用于使所述工具主体在所述井中前进的轴向驱动机构,以及由所述马达驱动的钻头,用于在所述工作面处钻取地下地层并在所述工具前进时产生切屑。 该钻具优选通过延伸穿过横向钻孔和主钻孔的缆索连接到该表面。 该方法独立地包括将钻孔的切屑从工作面传送到钻孔工具正后方的侧向钻孔的一部分。 从钻井工具后面将钻探的钻屑运输到侧钻孔和主井的交界处。 并将切割物从接头运送到处置场所。
    • 9. 发明授权
    • Gas minimization in riser for well control event
    • 井管控制事件提升气体最小化
    • US07578350B2
    • 2009-08-25
    • US11564665
    • 2006-11-29
    • Iain CooperWalter Aldred
    • Iain CooperWalter Aldred
    • E21B7/12
    • E21B33/0355E21B33/064
    • A system for controlling gas in a subsea drilling operation is disclosed in one embodiment. The system includes a subsea blow-out preventer, riser coupled to the blow-out preventer, a gas sensor, a controller, and a signal pathway. The gas sensor is configured for placement below the riser and configured to contact wellbore fluids during normal drilling operation. The controller configured to automatically cause manipulation the blow-out preventer based upon information from the gas sensor. The signal pathway couples the gas sensor with the controller.
    • 在一个实施例中公开了一种用于在海底钻井操作中控制气体的系统。 该系统包括海底防喷器,联接到防喷器的提升管,气体传感器,控制器和信号通路。 气体传感器被配置为放置在提升管下方并且被配置为在正常钻井操作期间接触井筒流体。 所述控制器被配置为基于来自所述气体传感器的信息自动地使所述防喷器被操纵。 信号通道将气体传感器与控制器连接。
    • 10. 发明申请
    • TAGGED PARTICLES FOR DOWNHOLE APPLICATION
    • 用于井下应用的标签颗粒
    • US20090087912A1
    • 2009-04-02
    • US12240607
    • 2008-09-29
    • Rogerio T. RamosIain CooperJ. Ernest Brown
    • Rogerio T. RamosIain CooperJ. Ernest Brown
    • G01N33/24
    • E21B47/102C09K8/032C09K8/80C09K8/805E21B43/267E21B47/1015G01N33/2823
    • A tagged object includes a main body and a plurality of coded particles. Each coded particle may have a miniature body and be configured to provide a resolvable optical emission pattern when illuminate. The plurality of coded particles may be immobilized to the main body. A method for performing oilfield monitoring may include disposing of different types of tagged objects at different locations, wherein the different types of tagged objects each comprise a plurality of coded particles. Each of the coded particles may have a miniature body containing rare earth elements configured to produce a unique optical emission pattern when illuminated. The method may include allowing an event to trigger the release of one of the different types of tagged objects from one of the different locations. In addition, the method may include identifying the released tagged objects by unique optical emission patterns, in some cases in order to determining an occurrence location of the event.
    • 标签对象包括主体和多个编码粒子。 每个编码的粒子可以具有微型体,并且被配置为当照明时提供可分辨的光发射图案。 多个编码粒子可以固定在主体上。 用于执行油田监测的方法可以包括在不同位置处布置不同类型的标记物体,其中不同类型的标记物体各自包括多个编码粒子。 每个编码的颗粒可以具有包含稀土元素的微型体,其被配置为在照亮时产生唯一的光发射图案。 该方法可以包括允许事件从不同位置之一触发不同类型的标记对象之一的释放。 此外,该方法可以包括通过唯一的光发射模式识别释放的标记对象,在某些情况下,为了确定事件的发生位置。