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    • 3. 发明申请
    • GASKET FOR INDUCTIVE COUPLING BETWEEN WIRED DRILL PIPE
    • 导线管之间的电感耦合垫片
    • WO2010101549A1
    • 2010-09-10
    • PCT/US2009/001420
    • 2009-03-05
    • HALLIBURTON ENERGY SERVICES, INC.RODNEY, Paul, F.GOLLA, Christopher
    • RODNEY, Paul, F.GOLLA, Christopher
    • E21B17/02
    • E21B17/028E21B19/16E21B33/10E21B47/12E21B2033/005
    • In some embodiments, an apparatus comprises a gasket (500, 620) configured for positioning between an end of a first drill pipe and an end of a second drill pipe, wherein the end of the first drill pipe (602) includes an inductive coil ring (610) and the end of the second drill pipe (604) includes an inductive coil ring (616). The gasket includes an outer ring (506, 624) that is comprised of an elastic magnetic material that is essentially nonconductive. The outer ring has a diameter that is greater than the diameters of the inductive coil rings. The gasket includes an inner ring (502, 622) 6 that is comprised of an elastic magnetic material that is essentially nonconductive. The inner ring has a diameter that is smaller than the diameters of the inductive coil rings, wherein the gasket is to be positioned such that the outer ring and the inner ring are outside and inside, respectively, the diameters of the inductive coil rings.
    • 在一些实施例中,一种装置包括被配置用于定位在第一钻杆的端部和第二钻杆的端部之间的垫圈(500,620),其中第一钻杆(602)的端部包括感应线圈环 (610),并且所述第二钻杆(604)的端部包括感应线圈环(616)。 垫圈包括由基本上不导电的弹性磁性材料构成的外环(506,624)。 外圈的直径大于感应线圈的直径。 垫圈包括由基本上不导电的弹性磁性材料构成的内圈(502,622)6。 内环的直径小于感应线圈环的直径,其中垫圈将被定位成使得外圈和内圈分别在感应线圈环的直径的外侧和内侧。
    • 4. 发明申请
    • FORMATION TREATMENT USING ELECTROMAGNETIC RADIATION
    • 使用电磁辐射的形成处理
    • WO2009151891A2
    • 2009-12-17
    • PCT/US2009044536
    • 2009-05-19
    • HALLIBURTON ENERGY SERV INCDUDLEY JAMES HMA KHANH TRODNEY PAUL F
    • DUDLEY JAMES HMA KHANH TRODNEY PAUL F
    • E21B43/2401E21B43/2405E21B43/263
    • A method of treating a subterranean formation includes injecting a magnetically permeable material into the formation and energizing the magnetically permeable material using electromagnetic radiation. The magnetically permeable material reacts to the electromagnetic radiation by producing heat. In some embodiments, a fracturing fluid is made magnetically permeable, injected into the formation to fracture the formation, and heated in response to electromagnetic radiation applied to the magnetically permeable material. In some embodiments, electromagnetically heated material is caused to explode. In some embodiments, the magnetically permeable material is tracked or monitored for fluid or fracture propagation. A system includes a fluid treatment tool (100, 200) disposed on a tubing string (118, 208, 318, 518) for injecting magnetically permeable material and an electromagnetic wave generator (300, 400, 500, 602, 702) disposed on the tubing string proximate the fluid treatment apparatus for applying electromagnetic radiation to the magnetically permeable material.
    • 处理地下地层的方法包括将导磁材料注入到地层中并使用电磁辐射激励导磁材料。 导磁材料通过产生热而与电磁辐射反应。 在一些实施例中,压裂流体被制造为可磁导通的,注入到地层中以破裂地层,并且响应于施加到导磁材料的电磁辐射而被加热。 在一些实施例中,使电磁加热的材料爆炸。 在一些实施例中,磁导率材料被跟踪或监测以获得流体或裂缝传播。 一种系统包括设置在用于注射导磁材料的油管柱(118,208,318,518)上的流体处理工具(100,200),以及设置在该管道上的电磁波发生器(300,400,500,602,702) 靠近流体处理设备的油管柱,用于将电磁辐射施加到导磁材料上。
    • 6. 发明申请
    • SYSTEMS AND METHODS FOR DISPLAYING LOGGING DATA
    • 用于显示记录数据的系统和方法
    • WO2008118735A1
    • 2008-10-02
    • PCT/US2008/057619
    • 2008-03-20
    • HALLIBURTON ENERGY SERVICES, INC.BITTAR, Michael, S.PAULK, Martin, D.ALTHOFF, GaryRODNEY, Paul, F.HVEDING, Frode
    • BITTAR, Michael, S.PAULK, Martin, D.ALTHOFF, GaryRODNEY, Paul, F.HVEDING, Frode
    • E21B47/00
    • E21B47/00G01V1/34G06T19/00
    • Borehole data presentation systems and methods that facilitate communication of volumetric logging data to a surface processing system for presentation to a driller or other user interested in visualizing the formations surrounding a borehole. The disclosed systems optionally tailor the telemetry stream to match the chosen display technique, thereby maximizing the logging system utility for the driller. Variable opacity of certain data regions or certain data discontinuities greatly facilitates data comprehension, particularly when true three-dimensional display technologies are employed. Holographic or stereoscopic display technologies may be employed to show the three-dimensional dependence of measured formation properties such as resistivity, density, and porosity. Alternatively, the radial axis can be used to represent a formation parameter value, thereby enabling cylindrical cross-plots of multiple measurements. The user can control viewing position and orientation to more fully explore the three dimensional representation.
    • 井眼数据呈现系统和方法,其便于将体积测井数据传送到表面处理系统,以呈现给对钻孔周围的地层进行可视化感兴趣的钻井者或其他用户。 所公开的系统可选地定制遥测流以匹配所选择的显示技术,从而最大限度地提高了钻井者的测井系统效用。 某些数据区域或某些数据不连续性的可变不透明度大大有助于数据理解,特别是当采用真实的三维显示技术时。 可以使用全息或立体显示技术来显示测量的地层性质如电阻率,密度和孔隙度的三维依赖性。 或者,径向轴可以用于表示地层参数值,从而实现多个测量的圆柱形交叉图。 用户可以控制观看位置和方向,以更全面地探索三维表示。
    • 9. 发明申请
    • A DOWNHOLE POSITIONING SYSTEM
    • 井下定位系统
    • WO2005081993A3
    • 2007-08-16
    • PCT/US2005005821
    • 2005-02-23
    • HALLIBURTON ENERGY SERV INCRODNEY PAUL F
    • RODNEY PAUL F
    • G01V1/40E21B47/024E21B47/04
    • E21B47/04
    • Downhole positioning systems and associated methods are disclosed. In some embodiments, the system comprises a downhole source, an array of receivers, and a data hub. The downhole source transmits an electromagnetic positioning signal that is received by the array of receivers. The data hub collects amplitude and/or phase measurements of the electromagnetic positioning signal from receivers in the array and combines these measurements to determine the position of the downhole source. The position may be tracked over time to determine the source's path. The position calculation may take various forms, including determination of a source-to-receiver distance for multiple receivers in the array, coupled with geometric analysis of the distances to determine source position. The electromagnetic positioning signal may be in the sub-hertz frequency range.
    • 公开了井下定位系统及相关方法。 在一些实施例中,该系统包括井下源,接收器阵列和数据集线器。 井下源发射由接收器阵列接收的电磁定位信号。 数据中心收集来自阵列中的接收器的电磁定位信号的振幅和/或相位测量,并组合这些测量值以确定井下源的位置。 该位置可能随时间被跟踪以确定源的路径。 位置计算可以采取各种形式,包括确定阵列中多个接收器的源到接收器距离,以及距离的几何分析以确定源位置。 电磁定位信号可以在亚赫兹频率范围内。