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    • 2. 发明申请
    • METHODS AND SYSTEMS FOR ROBUST AND ACCURATE DETERMINATION OF WIRELINE DEPTH IN A BOREHOLE
    • 方法和系统,用于稳定和精确确定井眼中的线深度
    • US20080217007A1
    • 2008-09-11
    • US12124677
    • 2008-05-21
    • Harry BarrowAshley JohnsonMichael BarrettCharles JenkinsJohn CorbenGary Rytlewski
    • Harry BarrowAshley JohnsonMichael BarrettCharles JenkinsJohn CorbenGary Rytlewski
    • E21B47/04
    • E21B47/04
    • This invention relates in general to measuring depth of well-tools, such as logging tools or the like, in a borehole. Embodiments of the present invention may provide for disposing conducting areas along a wireline that may be used to suspend and move the well-tool in the borehole, where the conducting areas may be disposed along the wireline at predetermined locations. A reader may be located at a reference location and may read when a conducting area passes through the reference location and this information may be used to determine the depth of the well-tool in the borehole. Additionally, this invention provides for combining depth measurements from the conducting areas with measurements from odometer wheels in frictional contact with the wireline and/or time of flight measurements of optical pulses passed along a fiber optic cable coupled with the wireline to accurately and robustly measure the depth of the wireline in the borehole.
    • 本发明一般涉及在钻孔中测量诸如测井工具等的井具的深度。 本发明的实施例可以提供沿着电缆布置导电区域,其可以用于悬挂和移动钻孔中的井具,其中导电区域可以沿着预定位置的电缆布置。 读取器可以位于参考位置,并且可以在导电区域通过参考位置时读取,并且该信息可以用于确定钻孔中井具的深度。 另外,本发明提供了将来自导电区域的深度测量结果与来自里程计轮的测量值与电缆摩擦接触和/或沿与光缆耦合的光纤传输的光脉冲的飞行时间测量结合,以精确和鲁棒地测量 钻孔深度的电缆。
    • 3. 发明申请
    • Methods and systems for robust and accurate determination of wireline depth in a borehole
    • 方法和系统,用于牢固而准确地确定钻孔中的电缆深度
    • US20070131418A1
    • 2007-06-14
    • US11300573
    • 2005-12-14
    • Harry BarrowAshley JohnsonMichael BarrettCharles JenkinsJohn CorbenGary Rytlewski
    • Harry BarrowAshley JohnsonMichael BarrettCharles JenkinsJohn CorbenGary Rytlewski
    • E21B47/09
    • E21B47/04
    • This invention relates in general to measuring depth of well-tools, such as logging tools or the like, in a borehole. Embodiments of the present invention may provide for disposing transponders along a wireline that may be used to suspend and move the well-tool in the borehole, where the transponders may be disposed along the wireline at predetermined locations. A reader may be located at a reference location and may read when a transponder passes through the reference location and this information may be used to determine the depth of the well-tool in the borehole. Additionally, this invention provides for combining depth measurements from the transponders with measurements from odometer wheels in frictional contact with the wireline and/or time of flight measurements of optical pulses passed along a fiber optic cable coupled with the wireline to accurately and robustly measure the depth of the wireline in the borehole.
    • 本发明一般涉及在钻孔中测量诸如测井工具等的井具的深度。 本发明的实施例可以提供沿着电缆布置应答器,其可以用于悬挂和移动钻孔中的井具,其中应答器可以沿着预定位置的电缆布置。 读取器可以位于参考位置,并且当应答器通过参考位置时可以读取,并且该信息可以用于确定井眼中的井具的深度。 另外,本发明提供了将来自转发器的深度测量结果与来自里程计轮的测量结果与电缆摩擦接触和/或沿着与电缆耦合的光纤电缆通过的光脉冲的飞行时间测量结果精确地和鲁棒地测量深度 的钻孔中的电缆。
    • 4. 发明授权
    • Methods and systems for robust and accurate determination of wireline depth in a borehole
    • 方法和系统,用于牢固而准确地确定钻孔中的电缆深度
    • US07458421B2
    • 2008-12-02
    • US11300573
    • 2005-12-14
    • Harry BarrowAshley JohnsonMichael BarrettCharles JenkinsJohn CorbenGary Rytlewski
    • Harry BarrowAshley JohnsonMichael BarrettCharles JenkinsJohn CorbenGary Rytlewski
    • E21B47/04E21B47/09
    • E21B47/04
    • This invention relates in general to measuring depth of well-tools, such as logging tools or the like, in a borehole. Embodiments of the present invention may provide for disposing transponders along a wireline that may be used to suspend and move the well-tool in the borehole, where the transponders may be disposed along the wireline at predetermined locations. A reader may be located at a reference location and may read when a transponder passes through the reference location and this information may be used to determine the depth of the well-tool in the borehole. Additionally, this invention provides for combining depth measurements from the transponders with measurements from odometer wheels in frictional contact with the wireline and/or time of flight measurements of optical pulses passed along a fiber optic cable coupled with the wireline to accurately and robustly measure the depth of the wireline in the borehole.
    • 本发明一般涉及在钻孔中测量诸如测井工具等的井具的深度。 本发明的实施例可以提供沿着电缆布置应答器,其可以用于悬挂和移动钻孔中的井具,其中应答器可以沿着预定位置的电缆布置。 读取器可以位于参考位置,并且当应答器通过参考位置时可以读取,并且该信息可以用于确定井眼中的井具的深度。 另外,本发明提供了将来自转发器的深度测量结果与来自里程计轮的测量结果与电缆摩擦接触和/或沿着与电缆耦合的光纤电缆通过的光脉冲的飞行时间测量结果精确地和鲁棒地测量深度 的钻孔中的电缆。
    • 7. 发明授权
    • Drive mechanism
    • 驱动机构
    • US08544560B2
    • 2013-10-01
    • US12611191
    • 2009-11-03
    • William BertramWalter AldredAshley JohnsonFrank EspinosaMichael BarrettCarlos Delgado
    • William BertramWalter AldredAshley JohnsonFrank EspinosaMichael BarrettCarlos Delgado
    • E21B4/06
    • E21B7/06E21B7/067E21B41/00
    • A drive mechanism is described for moving/controlling objects/mechanisms/systems coupled with a drillstring and/or pipe. The drive mechanism may be axially arranged on a drillstring or pipe, compact, capable of fine control and delivering high torque or the like and may be electrically and/or hydraulically powered. The drive mechanism may comprising a driving member comprising a plurality of drivers linearly translatable with respect to the driving member, each driving member having at their ends a male engaging portion and an associated driven member, comprising a plurality of female receiving portions adapted to receive a male engaging portion, the arrangement being such that linear translation of a driver causes its engaging portion to engage with a female receiving portion and the action of the engaging portion produces a reaction in the receiving portion causing displacement of the driven member in a direction other than that of the translatable driver.
    • 描述了用于移动/控制与钻柱和/或管道耦合的物体/机构/系统的驱动机构。 驱动机构可以轴向地布置在钻柱或管道上,紧凑的,能够精确控制和输送高扭矩等,并且可以是电和/或液压动力。 驱动机构可以包括驱动构件,该驱动构件包括可相对于驱动构件直线移动的多个驱动器,每个驱动构件在其端部处具有阳接合部分和相关联的从动构件,包括多个阴接收部分, 阳接合部分,这种布置使得驾驶员的直线平移使其接合部分与阴接收部分接合,并且接合部分的作用在接收部分中产生反作用,导致从动构件沿除了 那个可翻译的司机。
    • 9. 发明申请
    • BRONCHIAL FLOW CONTROL DEVICES AND METHODS OF USE
    • US20110010910A1
    • 2011-01-20
    • US12820393
    • 2010-06-22
    • Michael J. HendricksenMichael Barrett
    • Michael J. HendricksenMichael Barrett
    • B23P11/00
    • A61F2/04A61B17/12104A61B17/12172A61B17/12177A61F2002/043Y10T29/49826
    • Disclosed is an assembly for loading a bronchial flow control device into a container, such as into a delivery catheter. The assembly includes a funnel housing and a puller housing that mate with one another. The funnel housing defines a funnel-shaped loading cavity that receives a flow control device and that gradually reduces in size moving in a first direction. The puller housing is removably attached to the funnel housing and is also removably attachable to a bronchial flow control device that can be positioned in the loading cavity. The puller housing pulls the bronchial flow control device in the first direction through the funnel housing to gradually contract the bronchial flow control device into a compressed state of reduced size relative to the expanded size.
    • 公开了一种用于将支气管流量控制装置装载到诸如输送导管之类的容器中的组件。 该组件包括一个漏斗壳体和一个相互配合的拔出器壳体。 漏斗壳体限定漏斗形加载腔,其接纳流量控制装置,并逐渐减小尺寸沿第一方向移动。 牵引器壳体可移除地附接到漏斗壳体,并且还可移除地附接到能够定位在加载腔中的支气管流量控制装置。 牵引器壳体通过漏斗壳体沿着第一方向拉动支气管流量控制装置,以逐渐将支气管流量控制装置收缩成相对于膨胀尺寸减小尺寸的压缩状态。