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    • 1. 发明授权
    • Gasket for inductive coupling between wired drill pipe
    • 有线钻杆之间的电感耦合垫片
    • US08991507B2
    • 2015-03-31
    • US13203815
    • 2009-03-05
    • Paul F. RodneyChristopher Golla
    • Paul F. RodneyChristopher Golla
    • E21B17/02E21B33/00
    • E21B17/028E21B19/16E21B33/10E21B47/12E21B2033/005
    • An apparatus comprises a gasket 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 includes an inductive coil ring and the end of the second drill pipe includes an inductive coil ring. The gasket includes an outer ring 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 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.
    • 一种装置包括垫圈,其构造成用于定位在第一钻杆的端部和第二钻杆的端部之间,其中第一钻杆的端部包括感应线圈环,并且第二钻杆的端部包括感应线圈 环。 垫圈包括由基本上不导电的弹性磁性材料构成的外圈。 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。 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。
    • 2. 发明申请
    • GASKET FOR INDUCTIVE COUPLING BETWEEN WIRED DRILL PIPE
    • 导线管之间的电感耦合垫圈
    • US20110315399A1
    • 2011-12-29
    • US13203815
    • 2009-03-05
    • Paul F. RodneyChristopher Golla
    • Paul F. RodneyChristopher Golla
    • E21B19/16F16L17/06E21B19/00
    • 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
    • Determining the Order of Devices in a Downhole String
    • 确定井下字符串中的设备顺序
    • US20120170409A1
    • 2012-07-05
    • US13265975
    • 2010-05-13
    • Christopher GollaLaban Marsh
    • Christopher GollaLaban Marsh
    • E21B47/16
    • E21B47/12E21B47/09H04L12/10
    • A string of subs includes a controller sub. The controller sub includes a first end, a second end, a controller, a first controller bus coupled to the controller, the first controller bus exiting at the first end of the controller sub, and a second controller bus coupled to the controller, the second controller bus being separate from the first controller bus, the second controller bus exiting at the second end of the controller sub. The string of subs also includes a first measuring sub and a second measuring sub. A process, running on a computer, discovers that the first measuring sub is connected to the first controller bus, discovers that the second measuring sub is connected to the first controller bus, determines that the first measuring sub is physically closer to the controller sub than the second measuring sub, and use the fact that the first measuring sub is physically closer to the controller sub than the second measuring sub in controlling the operation of the string of subs.
    • 一串子包含一个控制器子。 控制器子包括耦合到控制器的第一端,第二端,控制器,第一控制器总线,在控制器子级的第一端处退出的第一控制器总线和耦合到控制器的第二控制器总线,第二控制器总线 控制器总线与第一控制器总线分离,第二控制器总线在控制器副的第二端处退出。 子串还包括第一测量子和第二测量子。 在计算机上运行的过程,发现第一测量子连接到第一控制器总线,发现第二测量子连接到第一控制器总线,确定第一测量子在物理上更靠近控制器子,比 第二测量子,并且在控制子串的操作中使用第一测量子在物理上更靠近控制器子的事实,而不是第二测量子。
    • 5. 发明申请
    • Downhole cooling system
    • 井下冷却系统
    • US20060086506A1
    • 2006-04-27
    • US10973133
    • 2004-10-26
    • Christopher GollaJames MasinoRoger Schultz
    • Christopher GollaJames MasinoRoger Schultz
    • E21B43/24
    • E21B47/011
    • Apparatus and methods for operating an electronics assembly of a downhole tool. A method comprises disposing a temperature-sensitive electronic component within an insulated chamber contained within a downhole tool. The temperature of the temperature-sensitive electronic component is monitored and a temperature control system is selectively activated to regulate the temperature of the temperature-sensitive electronic component. A downhole electronic assembly comprises a temperature-sensitive electronic component and a temperature-tolerant electronic component in electrical communication with the temperature-sensitive electronic component. An insulating chamber provides a thermal barrier between the temperature-sensitive electronic component and the temperature-tolerant electronic component. A temperature control apparatus in thermal communication with the temperature-sensitive component.
    • 用于操作井下工具的电子组件的装置和方法。 一种方法包括将温度敏感的电子部件设置在包含在井下工具内的绝热室内。 监测温度敏感的电子元件的温度,选择性地激活温度控制系统以调节温度敏感的电子部件的温度。 井下电子组件包括温度敏感电子部件和与温度敏感电子部件电连通的耐温电子部件。 绝缘室在温度敏感的电子部件和耐温电子部件之间提供热障碍。 与温度敏感部件热连通的温度控制装置。
    • 7. 发明授权
    • Correcting for magnetic interference in azimuthal tool measurements
    • 纠正方位角刀具测量中的磁干扰
    • US09360582B2
    • 2016-06-07
    • US13175514
    • 2011-07-01
    • Michael S. BittarHsu-Hsiang WuChristopher Golla
    • Michael S. BittarHsu-Hsiang WuChristopher Golla
    • G01V3/26G01V3/28
    • G01V3/28
    • Methods and systems that compensate for magnetic interference in azimuthal tool measurements. At least some method embodiments include a downhole logging method that includes taking measurements as a function of orientation from inside a borehole. The measurements are associated with different azimuthal bins, and an azimuthal direction is determined for each azimuthal bin. Because the tool rotates at a constant rate, the relative number of measurements associated which the different bins can be used to measure the effective sizes of the different bins and to redetermine the effective angles of the bins in the presence of magnetic interference. The tool measurements may include, but are not limited to, formation resistivity, magnetic field, and formation density.
    • 补偿方位角刀具测量中的磁干扰的方法和系统。 至少一些方法实施例包括井下测井方法,其包括从钻孔内部取测量作为取向的函数。 测量与不同的方位箱相关联,并且为每个方位箱确定方位角方向。 由于工具以恒定的速率旋转,所以与不同的箱体相关联的测量的相对数量可用于测量不同箱体的有效尺寸,并在存在磁性干扰的情况下重新确定箱体的有效角度。 工具测量可以包括但不限于地层电阻率,磁场和地层密度。