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    • 101. 发明申请
    • Deployment of Underground Sensors in Casing
    • 地下传感器在套管中的部署
    • US20080308271A1
    • 2008-12-18
    • US11571021
    • 2005-06-21
    • Christian ChouzenouxBrian ClarkYves ManinBruno Drochon
    • Christian ChouzenouxBrian ClarkYves ManinBruno Drochon
    • E21B47/00
    • E21B47/01E21B47/122
    • The present invention discloses a monitoring system integrated on a casing or tubing sub (10) having an inner and an outer surface and defining an internal cavity, comprising a sensor (24); data communication means (21A) for providing wireless communication between an interrogating tool (20) located in the internal cavity (14) and the sensor, these data communication means being on the casing or tubing sub; and power communication means (21B) for providing wireless power supply to the sensor, these power communication means being on the casing or tubing sub. The invention further discloses a method of completing a well in a subsurface formation comprising the step of installing the casing or tubing sub of the present invention. The invention further discloses a method of monitoring subsurface formations, fluids in the well or casing and tubing properties with the casing or tubing sub of the present invention. The present invention discloses a monitoring system integrated on a casing or tubing sub having an inner and an outer surface and defining an internal cavity, comprising a sensor; data communication means for providing wireless communication between an interrogating tool located in the internal cavity and the sensor, these data communication means being on the casing or tubing sub; and power communication means for providing wireless power supply to the sensor, these power communication means being on the casing or tubing sub. The invention further discloses a method of completing a well in a subsurface formation comprising the step of installing the casing or tubing sub of the present invention. The invention further discloses a method of monitoring subsurface formations, fluids in the well or casing and tubing properties with the casing or tubing sub of the present invention.
    • 本发明公开了一种集成在具有内表面和外表面并限定内腔的套管或管子(10)上的监测系统,包括传感器(24); 数据通信装置(21A),用于在位于所述内部空腔(14)中的询问工具(20)和所述传感器之间提供无线通信,所述数据通信装置位于所述壳体或管道子系统上; 以及用于向传感器提供无线电力的电力通信装置(21B),这些电力通信装置在壳体或管道子系统上。 本发明还公开了一种在地下地层中完井的方法,包括安装本发明的套管或管子的步骤。 本发明进一步公开了本发明的壳体或管子的监测地下地层,井或套管中的流体和管道特性的方法。 本发明公开了一种集成在具有内表面和外表面并且限定内腔的套管或管子子系统上的监测系统,包括传感器; 数据通信装置,用于在位于所述内腔中的询问工具与所述传感器之间提供无线通信,所述数据通信装置位于套管或管子上; 以及用于向传感器提供无线电力的电力通信装置,这些电力通信装置在壳体或管道子系统上。 本发明还公开了一种在地下地层中完井的方法,包括安装本发明的套管或管子的步骤。 本发明进一步公开了本发明的壳体或管子的监测地下地层,井或套管中的流体和管道特性的方法。
    • 103. 发明授权
    • Replaceable antennas for wellbore apparatus
    • 井筒设备可更换天线
    • US07436183B2
    • 2008-10-14
    • US10260098
    • 2002-09-30
    • Brian Clark
    • Brian Clark
    • G01V3/18
    • E21B47/122G01V3/28
    • An antenna structure is separately and independently formed with respect to a downhole tool. The antenna is adapted for easy and rapid deployment on the tool. An independently formed ‘partial ring section’ (or arcuate shaped member) contains an antenna coil. In one embodiment, two or more of the independently formed partial ring sections are placed in a recess on the tubular forming the downhole tool. In another embodiment, the partial ring sections can also be placed in one or more longitudinally distributed sections about the tool. Another embodiment includes partial ring sections forming an antenna with multiple coils of differing orientation to provide directional sensitivity.
    • 天线结构相对于井下工具单独且独立地形成。 天线适用于在工具上轻松快速的部署。 独立形成的“部分环形部分”(或弓形部件)包含天线线圈。 在一个实施例中,两个或更多个独立形成的部分环部分被放置在形成井下工具的管状物的凹部中。 在另一个实施例中,部分环形部分也可以放置在围绕工具的一个或多个纵向分布的部分中。 另一实施例包括形成具有不同取向的多个线圈的天线的部分环形部分以提供方向灵敏度。
    • 104. 发明申请
    • Integrated Electrode Resistivity and EM Telemetry Tool
    • 集成电极电阻率和EM遥测工具
    • US20080156534A1
    • 2008-07-03
    • US11617216
    • 2006-12-28
    • Brian ClarkJan W. Smits
    • Brian ClarkJan W. Smits
    • E21B25/16
    • E21B47/102E21B47/01G01V11/002
    • An integrated electrode resistivity and EM telemetry tool and obtaining both formation resistivity and telemetry data from the integrated tool. An integrated electrode resistivity and EM telemetry tool having a drill collar including a first portion and a second portion separated by an insulated gap and telemetry cartridge carrying telemetry circuitry including a voltage source generating a voltage drop across the insulated gap and an axial current on a drill string that returns through an earthen formation includes an insulated measure electrode connected to the first portion, and resistivity measurement circuitry functionally connected to the measure electrode and the telemetry circuitry.
    • 集成电极电阻率和EM遥测工具,并从集成工具获得地层电阻率和遥测数据。 一种集成电极电阻率和EM遥测工具,其具有钻铤,所述钻铤包括第一部分和由绝缘间隙隔开的第二部分,以及承载遥测线路的遥测盒,所述遥测盒携带遥测线路,所述遥测线圈包括在所述绝缘间隙上产生电压降的电压源, 通过土层返回的绳索包括连接到第一部分的绝缘测量电极,以及功能上连接到测量电极和遥测电路的电阻率测量电路。
    • 105. 发明申请
    • METHOD AND CONDUIT FOR TRANSMITTING SIGNALS
    • 用于发送信号的方法和传输
    • US20080106433A1
    • 2008-05-08
    • US11873040
    • 2007-10-16
    • RAGHU MADHAVANBruce BoyleBrian ClarkStacy JohnsonDavid SantosoLise Hvatum
    • RAGHU MADHAVANBruce BoyleBrian ClarkStacy JohnsonDavid SantosoLise Hvatum
    • G01V3/00
    • E21B47/122E21B17/003E21B17/028E21B43/103G01V11/002Y10S439/95
    • A wired drill pipe segment includes a tubular body having an axial bore, a box end disposed at a first end of the tubular body having a first core material disposed in the box end, a pin end disposed at a second end of the tubular body having a second core material disposed in the pin end, a first coil winding wound around at least a portion of the first core material and a second coil winding wound around at least a portion of the first core material, a third coil winding wound around at least a portion of the second core material and a fourth coil winding wound around at least a portion of the second core material, a first conductor connected to the first coil winding and the third coil winding and extending through the tubular body, and a second conductor connected to the second coil winding and the fourth coil winding and extending through the tubular body.
    • 有线钻管段包括具有轴向孔的管状主体,设置在管状主体的第一端的箱体端部,其具有设置在箱体端部的第一芯材料,设置在管状主体的第二端处的销端部, 设置在所述销端部的第二芯材料,缠绕在所述第一芯材的至少一部分上的第一线圈绕组和缠绕在所述第一芯材的至少一部分上的第二线圈绕组, 所述第二芯材的一部分和围绕所述第二芯材的至少一部分缠绕的第四线圈绕组,连接到所述第一线圈绕组和所述第三线圈绕组并延伸穿过所述管状体的第一导体,以及连接到所述第二芯材的第二导体 到第二线圈绕组和第四线圈绕组并延伸穿过管状体。
    • 106. 发明申请
    • APPARATUS AND METHOD TO MEASURE FLUID RESISTIVITY
    • 测量流体电阻率的方法和方法
    • US20070018659A1
    • 2007-01-25
    • US11184527
    • 2005-07-19
    • Dean HomanAndrew CaoBrian Clark
    • Dean HomanAndrew CaoBrian Clark
    • G01R27/08
    • G01V3/20E21B49/10
    • An apparatus for measuring fluid resistivity includes a flow line adapted to be in fluid communication with formation fluids, wherein the flow line includes a first section comprising a first conductive area, a second section comprising a second conductive area, and an insulating section disposed between the first section and the second section to prevent direct electrical communication between the first section and the second section; a first toroid and a second toroid surrounding the flow line around the first section and the second section, respectively, wherein the first toroid is configured to induce an electrical current in a fluid in the flow line and the second toroid is configured to measure the electrical current induced in the fluid in the flow line; and an electronic package to control functions of the first toroid and the second toroid.
    • 一种用于测量流体电阻率的装置包括适于与地层流体流体连通的流动管线,其中流动管线包括第一部分,该第一部分包括第一导电区域,第二部分包括第二导电区域,以及绝缘部分, 第一部分和第二部分,以防止第一部分和第二部分之间的直接电气连通; 分别围绕第一部分和第二部分围绕流动管线的第一环形线圈和第二环形线圈,其中第一环形线圈被配置为在流动线路中的流体中感应电流,并且第二环形线圈被配置为测量电气 在流线中的流体中引起的电流; 以及用于控制第一环形线圈和第二环形线圈的功能的电子封装。
    • 107. 发明申请
    • Maximization of a hedged investment budget for an index-linked insurance product
    • 指数挂钩保险产品的套期投资预算最大化
    • US20060041453A1
    • 2006-02-23
    • US09845669
    • 2001-04-30
    • Brian ClarkWilliam Heng
    • Brian ClarkWilliam Heng
    • G06Q40/00
    • G06Q40/02G06Q40/00G06Q40/06G06Q40/08G06Q40/10
    • An index-linked insurance product having an annual guarantee is implemented having a maximized hedged investment budget. A net premium payment is allocated to a fixed income investment and an annual fixed income yield is projected. The maximized hedged investment budget is determined by deducting from the projected annual fixed income a product spread and an estimated cost of the annual guarantee. The deducted estimated cost of the annual guarantee is allocated to a risk fund. The maximized hedged investment budget is allocated to a hedged investment designed to generate proceeds for supporting index-linked earnings credited to the index-linked insurance product. Upon expiration of the product term, if the amount credited based on the index-linked earnings does not equal to at least the compounded annual guarantee, the amount credited is increased to be equal to the compounded annual guarantee. The increased credit may be supported using funds from the risk fund and other reserves if necessary.
    • 实行具有年度担保的指数挂钩保险产品,实行最大限度的对冲投资预算。 固定收益投资净溢价支付,预计年固定收益收益率。 最大限度的对冲投资预算是从预计的年度固定收入中扣除产品价差和年度担保的估计成本确定的。 扣除年度担保的估计费用分配给风险基金。 最大限度的对冲投资预算分配给套期投资,旨在产生收益,用于支持与指数挂钩保险产品相关的指数挂钩收益。 产品期限到期时,如果根据指数挂钩收益计入的金额不等于复合年度担保,则贷方金额增加至复合年限。 如有必要,可以使用风险基金和其他储备金的资金支持增加的信贷。
    • 109. 发明授权
    • Electromagnetic induction well logging instrument having azimuthally sensitive response
    • 具有方位敏感响应的电磁感应测井仪
    • US06509738B1
    • 2003-01-21
    • US09617528
    • 2000-07-14
    • Gerald N. MinerboBrian ClarkShu-Kong (Steve) Chang
    • Gerald N. MinerboBrian ClarkShu-Kong (Steve) Chang
    • G01V328
    • G01V3/28
    • An induction logging instrument is disclosed which includes at least one induction transmitter arranged as an axial magnetic dipole and at least one differential axial magnetic dipole receiver disposed at a selected axial distance from the at least one induction transmitter. In one embodiment, the receiver includes a pair of coils, each wound on an axis substantially parallel to an axis of the instrument. Each of the coil axes is displaced from the instrument axis by a substantially equal lateral distance in opposite directions. Each of the pair of coils is disposed at substantially the same axial position along the instrument, and the coils are interconnected in inverse series. In another embodiment, the receiver includes two pairs of coils, each wound on an axis substantially parallel to the axis of the instrument. Each of the coil axes in each pair is displaced from the instrument axis by a substantially equal lateral distance an in opposed directions. The pairs are substantially orthogonal to each other. Each of the coils is disposed at substantially the same axial position along the instrument, and the coils in each pair are connected to circuits adapted to determine a difference between signals induced in each of the coils.
    • 公开了一种感应测井仪器,其包括布置为轴向磁偶极子的至少一个感应发射器和设置在距所述至少一个感应发射器所选轴向距离的至少一个差动轴向磁偶极子接收器。 在一个实施例中,接收器包括一对线圈,每个线圈绕基本上平行于仪器的轴线的轴线缠绕。 每个线圈轴在仪器轴线上以相反方向基本相等的横向距离移位。 一对线圈中的每一个被设置在沿着仪器的基本相同的轴向位置处,并且线圈以相反的顺序相互连接。 在另一个实施例中,接收器包括两对线圈,每对线圈缠绕在基本上平行于仪器轴线的轴上。 每对中的每个线圈轴线在仪器轴线上以相反的方向从基本相等的横向距离a移位。 这些对基本上彼此正交。 每个线圈沿着仪器设置在基本相同的轴向位置,并且每对线圈中的线圈连接到适于确定在每个线圈中感应的信号之间的差异的电路。