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    • 1. 发明授权
    • Steerable magnetic dipole antenna for measurement while drilling applications
    • 可操纵的磁偶极天线用于测量钻孔时的应用
    • US08471563B2
    • 2013-06-25
    • US12653000
    • 2010-01-06
    • Macmillan M. WislerLarry W. ThompsonJian-Qun WuLance Pate
    • Macmillan M. WislerLarry W. ThompsonJian-Qun WuLance Pate
    • G01V3/00G01V3/18
    • G01V3/30
    • A steerable, magnetic dipole antenna for Measurement-While-Drilling (MWD) or Logging-While-Drilling (LWD) applications. The antenna elements use a hole arrangement in addition to grooves in a steel tool body, which is typically a drill collar. This antenna embodiment is extremely robust, meaning that does not significantly reduce the structural integrity of the tool body in which it is disposed. The antenna embodiment is also relatively wear resistant. The resultant magnetic dipole generated by this antenna is also electrically steerable in inclination angle from a common origin. A variable dipole moment inclination angle combined with independently measured tool rotation orientation during normal drilling allows the antenna to generate a magnetic dipole moment that may be directed at any three dimensional angle and from a common origin point at the centroid of the antenna. The antenna can also be embodied to be more sensitive to resitivity in a particular azimuthal direction.
    • 用于钻井测量(MWD)或钻井记录(LWD)应用的可操纵的磁偶极子天线。 天线元件除了通常是钻铤的钢工具主体中的凹槽之外还使用孔布置。 该天线实施例非常坚固,这意味着不会显着降低其所在的工具主体的结构完整性。 天线实施例也是相对耐磨的。 由该天线产生的所得磁偶极子也可以从公共原点以倾斜角度电动转向。 在正常钻孔期间结合独立测量的工具旋转定向的可变偶极矩倾斜角度允许天线产生磁偶极矩,其可以以任何三维角度和从天线的质心处的共同起点指向。 天线也可以被体现为对特定方位方向的电位更敏感。
    • 2. 发明申请
    • STEERABLE MAGNETIC DIPOLE ANTENNA FOR MEASUREMENT WHILE DRILLING APPLICATIONS
    • 用于在钻孔应用中测量的可转向磁性双极天线
    • US20110084698A1
    • 2011-04-14
    • US12653000
    • 2010-01-06
    • Macmillan M. WislerLarry W. ThompsonJian-Qun WuLance Pate
    • Macmillan M. WislerLarry W. ThompsonJian-Qun WuLance Pate
    • G01V3/00
    • G01V3/30
    • A steerable, magnetic dipole antenna for Measurement-While-Drilling (MWD) or Logging-While-Drilling (LWD) applications. The antenna elements use a hole arrangement in addition to grooves in a steel tool body, which is typically a drill collar. This antenna embodiment is extremely robust, meaning that does not significantly reduce the structural integrity of the tool body in which it is disposed. The antenna embodiment is also relatively wear resistant. The resultant magnetic dipole generated by this antenna is also electrically steerable in inclination angle from a common origin. A variable dipole moment inclination angle combined with independently measured tool rotation orientation during normal drilling allows the antenna to generate a magnetic dipole moment that may be directed at any three dimensional angle and from a common origin point at the centroid of the antenna. The antenna can also be embodied to be more sensitive to resitivity in a particular azimuthal direction.
    • 用于钻井测量(MWD)或钻井记录(LWD)应用的可操纵的磁偶极子天线。 天线元件除了通常是钻铤的钢工具主体中的凹槽之外还使用孔布置。 该天线实施例非常坚固,这意味着不会显着降低其所在的工具主体的结构完整性。 天线实施例也是相对耐磨的。 由该天线产生的所得磁偶极子也可以从公共原点以倾斜角度电动转向。 在正常钻孔期间结合独立测量的工具旋转定向的可变偶极矩倾斜角度允许天线产生磁偶极矩,其可以以任何三维角度和从天线的质心处的共同起点指向。 天线也可以被体现为对特定方位方向的电位更敏感。
    • 3. 发明授权
    • Steerable magnetic dipole antenna for measurement-while-drilling applications
    • 可操纵的磁偶极天线,用于测量同时钻孔应用
    • US09140817B2
    • 2015-09-22
    • US12873653
    • 2010-09-01
    • Macmillan M. WislerLarry W. ThompsonJian-Qun WuLance Pate
    • Macmillan M. WislerLarry W. ThompsonJian-Qun WuLance Pate
    • G01V3/08G01V3/30
    • G01V3/30
    • A steerable or non-steerable, magnetic dipole antenna for Measurement-While-Drilling (MWD) or Logging-While-Drilling (LWD) applications. The antenna elements use a hole arrangement in addition to grooves in a steel tool body, which is typically a drill collar. This antenna embodiment is extremely robust, meaning that does not significantly reduce the structural integrity of the tool body in which it is disposed. The antenna embodiment is also relatively wear resistant. The resultant magnetic dipole generated by this antenna is also electrically steerable in inclination angle from a common origin. A variable dipole moment inclination angle combined with independently measured tool rotation orientation during normal drilling allows the antenna to generate a magnetic dipole moment that may be directed at any three dimensional angle and from a common origin point at the centroid of the antenna. The antenna can also be embodied to be more sensitive to resistivity in a particular azimuthal direction.
    • 用于钻井测量(MWD)或钻井记录(LWD)应用的可操纵或不可操纵的磁偶极子天线。 天线元件除了通常是钻铤的钢工具主体中的凹槽之外还使用孔布置。 该天线实施例非常坚固,这意味着不会显着降低其所在的工具主体的结构完整性。 天线实施例也是相对耐磨的。 由该天线产生的所得磁偶极子也可以从公共原点以倾斜角度电动转向。 在正常钻孔期间结合独立测量的工具旋转定向的可变偶极矩倾斜角度允许天线产生磁偶极矩,其可以以任何三维角度和从天线的质心处的共同起点指向。 天线也可以被体现为在特定方位角方向对电阻率更敏感。
    • 4. 发明申请
    • STEERABLE MAGNETIC DIPOLE ANTENNA FOR MEASUREMENT-WHILE-DRILLING APPLICATIONS
    • 用于测量 - 钻井应用的可转向磁性双极天线
    • US20110084699A1
    • 2011-04-14
    • US12873653
    • 2010-09-01
    • Macmillan M. WislerLarry W. ThompsonJian-Qun WuLance Pate
    • Macmillan M. WislerLarry W. ThompsonJian-Qun WuLance Pate
    • G01V3/08
    • G01V3/30
    • A steerable or non-steerable, magnetic dipole antenna for Measurement-While-Drilling (MWD) or Logging-While-Drilling (LWD) applications. The antenna elements use a hole arrangement in addition to grooves in a steel tool body, which is typically a drill collar. This antenna embodiment is extremely robust, meaning that does not significantly reduce the structural integrity of the tool body in which it is disposed. The antenna embodiment is also relatively wear resistant. The resultant magnetic dipole generated by this antenna is also electrically steerable in inclination angle from a common origin. A variable dipole moment inclination angle combined with independently measured tool rotation orientation during normal drilling allows the antenna to generate a magnetic dipole moment that may be directed at any three dimensional angle and from a common origin point at the centroid of the antenna. The antenna can also be embodied to be more sensitive to resistivity in a particular azimuthal direction.
    • 用于钻井测量(MWD)或钻井记录(LWD)应用的可操纵或不可操纵的磁偶极子天线。 天线元件除了通常是钻铤的钢工具主体中的凹槽之外还使用孔布置。 该天线实施例非常坚固,这意味着不会显着降低其所在的工具主体的结构完整性。 天线实施例也是相对耐磨的。 由该天线产生的所得磁偶极子也可以从公共原点以倾斜角度电动转向。 在正常钻孔期间结合独立测量的工具旋转定向的可变偶极矩倾斜角度允许天线产生磁偶极矩,其可以以任何三维角度和从天线的质心处的共同起点指向。 天线也可以被体现为在特定方位角方向对电阻率更敏感。
    • 5. 发明授权
    • Steerable magnetic dipole antenna for measurement while drilling applications
    • 可操纵的磁偶极天线用于测量钻孔时的应用
    • US09366780B2
    • 2016-06-14
    • US12575566
    • 2009-10-08
    • Macmillan M. WislerLarry W. ThompsonJian-Qun WuLance Pate
    • Macmillan M. WislerLarry W. ThompsonJian-Qun WuLance Pate
    • G01V3/00G01V3/28
    • G01V3/28
    • A steerable, magnetic dipole antenna for Measurement-While-Drilling (MWD) or Logging-While-Drilling (LWD) applications. The antenna elements use a hole arrangement in addition to grooves in a steel tool body, which is typically a drill collar. This antenna embodiment is extremely robust, meaning that does not significantly reduce the structural integrity of the tool body in which it is disposed. The antenna embodiment is also relatively wear resistant. The resultant magnetic dipole generated by this antenna is also electrically steerable in inclination angle from a common origin. A variable dipole moment inclination angle combined with independently measured tool rotation orientation during normal drilling allows the antenna to generate a magnetic dipole moment that may be directed at any three dimensional angle and from a common origin point at the centroid of the antenna.
    • 用于钻井测量(MWD)或钻井记录(LWD)应用的可操纵的磁偶极子天线。 天线元件除了通常是钻铤的钢工具主体中的凹槽之外还使用孔布置。 该天线实施例非常坚固,这意味着不会显着降低其所在的工具主体的结构完整性。 天线实施例也是相对耐磨的。 由该天线产生的所得磁偶极子也可以从公共原点以倾斜角度电动转向。 在正常钻孔期间结合独立测量的工具旋转定向的可变偶极矩倾斜角度允许天线产生磁偶极矩,其可以以任何三维角度和从天线的质心处的共同起点指向。
    • 7. 发明申请
    • STEERABLE MAGNETIC DIPOLE ANTENNA FOR MEASUREMENT-WHILE-DRILLING APPLICATIONS
    • 用于测量 - 钻井应用的可转向磁性双极天线
    • US20110187373A1
    • 2011-08-04
    • US13084856
    • 2011-04-12
    • Macmillan M. WislerLarry W. ThompsonJian-Qun WuLance Pate
    • Macmillan M. WislerLarry W. ThompsonJian-Qun WuLance Pate
    • G01V3/00G01V3/08
    • G01V3/00G01V3/08
    • A steerable or non-steerable, magnetic dipole antenna for Measurement-While-Drilling (MWD) or Logging-While-Drilling (LWD) applications. The antenna elements use a hole arrangement in addition to grooves in a steel tool body, which is typically a drill collar. This antenna embodiment is extremely robust, meaning that does not significantly reduce the structural integrity of the tool body in which it is disposed. The antenna embodiment is also relatively wear resistant. The resultant magnetic dipole generated by this antenna is also electrically steerable in inclination angle from a common origin. A variable dipole moment inclination angle combined with independently measured tool rotation orientation during normal drilling allows the antenna to generate a magnetic dipole moment that may be directed at any three dimensional angle and from a common origin point at the centroid of the antenna. The antenna can also be embodied to be more sensitive to resitivity in a particular azimuthal direction.
    • 用于钻井测量(MWD)或钻井记录(LWD)应用的可操纵或不可操纵的磁偶极子天线。 天线元件除了通常是钻铤的钢制工具主体中的凹槽之外还使用孔布置。 该天线实施例非常坚固,这意味着不会显着降低其所在的工具主体的结构完整性。 天线实施例也是相对耐磨的。 由该天线产生的所得磁偶极子也可以从公共原点以倾斜角度电动转向。 在正常钻孔期间结合独立测量的工具旋转定向的可变偶极矩倾斜角度允许天线产生磁偶极矩,其可以以任何三维角度和从天线的质心处的共同起点指向。 天线也可以被体现为对特定方位方向的电位更敏感。
    • 8. 发明申请
    • STEERABLE MAGNETIC DIPOLE ANTENNA FOR MEASUREMENT WHILE DRILLING APPLICATIONS
    • 用于在钻孔应用中测量的可转向磁性双极天线
    • US20110084697A1
    • 2011-04-14
    • US12575566
    • 2009-10-08
    • Macmillan M. WislerLarry W. ThompsonJian-Qun WuLance Pate
    • Macmillan M. WislerLarry W. ThompsonJian-Qun WuLance Pate
    • G01V3/00
    • G01V3/28
    • A steerable, magnetic dipole antenna for Measurement-While-Drilling (MWD) or Logging-While-Drilling (LWD) applications. The antenna elements use a hole arrangement in addition to grooves in a steel tool body, which is typically a drill collar. This antenna embodiment is extremely robust, meaning that does not significantly reduce the structural integrity of the tool body in which it is disposed. The antenna embodiment is also relatively wear resistant. The resultant magnetic dipole generated by this antenna is also electrically steerable in inclination angle from a common origin. A variable dipole moment inclination angle combined with independently measured tool rotation orientation during normal drilling allows the antenna to generate a magnetic dipole moment that may be directed at any three dimensional angle and from a common origin point at the centroid of the antenna.
    • 用于钻井测量(MWD)或钻井记录(LWD)应用的可操纵的磁偶极子天线。 天线元件除了通常是钻铤的钢工具主体中的凹槽之外还使用孔布置。 该天线实施例非常坚固,这意味着不会显着降低其所在的工具主体的结构完整性。 天线实施例也是相对耐磨的。 由该天线产生的所得磁偶极子也可以从公共原点以倾斜角度电动转向。 在正常钻孔期间结合独立测量的工具旋转定向的可变偶极矩倾斜角度允许天线产生磁偶极矩,其可以以任何三维角度和从天线的质心处的共同起点指向。
    • 10. 发明授权
    • Wellbore resistivity tool with simultaneous multiple frequencies
    • 井筒电阻率工具同时具有多个频率
    • US06703837B1
    • 2004-03-09
    • US09662973
    • 2000-09-15
    • MacMillan M. WislerLarry W. Thompson
    • MacMillan M. WislerLarry W. Thompson
    • G01V330
    • G01V3/28
    • The present invention is a propagation resistivity system that utilizes one or more transmitter coil antennas, or “transmitters” and at least two receiver coil antennas, or “receivers”. The system uses a wellbore resistivity tool which may be embodied as a MWD tool or as a wireline tool. Two or more transmitters may be spaced equally on either side of two or more spaced-apart receivers. Two or more frequencies are transmitted and received simultaneously. Multiple frequencies may be transmitted from each transmitter or from separate transmitters at the same time. Multiple frequencies are simultaneously received and analyzed by the receiver electronics, thereby reducing the measurement time for multiple frequency measurements. In one embodiment each of two transmitters transmits simultaneously. One transmitter operates on a high frequency. The second transmitter operates at a lower frequency. The higher frequency signal penetrates a relatively shallow radial distance into the formation and the lower frequency penetrates to a radial depth which exceeds the higher frequency. Composite measurements made at two radial depths are used to compensate for factors having adverse effects on resistivity measurements in the immediate region of the borehole. Such factors include invasion, variations in borehole size, variations in borehole fluid, and the like.
    • 本发明是利用一个或多个发射器线圈天线或“发射器”和至少两个接收器线圈天线或“接收器”的传播电阻率系统。 该系统使用井眼电阻率工具,其可以被实现为MWD工具或作为电缆工具。 两个或更多个发射器可以在两个或更多个间隔开的接收器的任一侧上均匀间隔开。 同时发送和接收两个或更多个频率。 多个频率可以从每个发射机或从单独的发射机同时发射。 多个频率同时由接收机电子接收和分析,从而减少多次频率测量的测量时间。 在一个实施例中,两个发射机中的每一个同时发射。 一个发射机在高频下工作。 第二个发射机的频率较低。 较高的频率信号穿过相对浅的径向距离进入地层,较低的频率穿透到超过较高频率的径向深度。 在两个径向深度进行的复合测量用于补偿在井眼的近区域对电阻率测量有不利影响的因素。 这些因素包括入侵,井眼尺寸的变化,井眼流体的变化等。