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    • 33. 发明授权
    • System and method for controlling and monitoring a drilling operation using refined solutions from a panistic inversion
    • 使用来自全局反演的精细解决方案来控制和监测钻井作业的系统和方法
    • US09045967B2
    • 2015-06-02
    • US13191354
    • 2011-07-26
    • Denis HeliotSteven F. CraryJean Seydoux
    • Denis HeliotSteven F. CraryJean Seydoux
    • E21B44/00E21B47/022
    • E21B44/00E21B47/022G06Q50/02
    • During a drilling operation, measured data from the drilling operation may be received with a panistic inversion and risk estimate module. The panistic inversion and risk estimate module may generate a plurality of mathematical solutions from a panistic inversion that uses the measured data and one or more earth models. The one or more earth models having various parameters may be selected prior to drilling and/or while the drilling operation occurs. For each solution of the plurality of mathematical solutions generated from the panistic inversion, the panistic inversion and risk estimate module may determine if the measured data exceeds one or more probability risk thresholds associated with the drilling operation. If the measured data exceeds the probability risk threshold associated with the drilling operation, then the panistic inversion and risk estimate module may generate an alert.
    • 在钻井作业期间,钻井作业的测量数据可以采用全局反演和风险估算模块接收。 全局反演和风险估计模块可以从使用测量数据和一个或多个地球模型的平稳反演中产生多个数学解。 具有各种参数的一个或多个地球模型可以在钻井之前和/或在钻井操作发生时被选择。 对于从全局反演产生的多个数学解的每个解,平均反演和风险估计模块可以确定测量数据是否超过与钻井操作相关联的一个或多个概率风险阈值。 如果测量数据超过与钻井操作相关联的概率风险阈值,则全局反演和风险估计模块可能会产生警报。
    • 34. 发明授权
    • Resistivity tool with selectable depths of investigation
    • 电阻率工具,可选择深度调查
    • US07825664B2
    • 2010-11-02
    • US11612881
    • 2006-12-19
    • Dean HomanEdward NicholsMichael WiltJean Seydoux
    • Dean HomanEdward NicholsMichael WiltJean Seydoux
    • G01V3/18G01V3/30
    • G01V3/28
    • A wireline tool string used in a wellbore to determine formation properties is disclosed which comprises one or more transmitter tools disposed within the tool string, each transmitter tool having three linearly independent coils; a receiver tool disposed within the tool string, wherein the receiver tool has three linearly independent coils; and a tool string component disposed between the one or mole transmitter tools and the receiver tool; wherein the one or more transmitter tools are selectably spatially separated from the receiver tool along the tool string to provide a desired depth of investigation and measurements made using the one or more transmitter tools and receiver tool are used to determine formation properties.
    • 公开了一种在井眼中用于确定地层特性的电缆工具串,其包括设置在工具串内的一个或多个发射器工具,每个发射器工具具有三个线性独立的线圈; 设置在所述工具串内的接收器工具,其中所述接收器工具具有三个线性独立的线圈; 以及设置在所述一个或多个发射器工具和所述接收器工具之间的工具串组件; 其中所述一个或多个发射器工具沿着所述工具串可选地在空间上与所述接收器工具分离以提供期望的调查深度,并且使用所述一个或多个发射器工具和接收器工具进行的测量被用于确定地层性质。
    • 36. 发明授权
    • Shielding method and apparatus using transverse slots
    • 使用横槽的屏蔽方法和装置
    • US06566881B2
    • 2003-05-20
    • US09746927
    • 2000-12-22
    • Dzevat OmeragicJean SeydouxRichard A. Rosthal
    • Dzevat OmeragicJean SeydouxRichard A. Rosthal
    • G01V330
    • G01V3/28G01V3/30H01Q1/526H01Q7/00H01Q13/10H01Q17/001
    • A shielding method and apparatus for an antenna disposed on an elongated support adapted for disposal within a borehole. The shield providing predetermined attenuation of one or more electromagnetic energy field components as the field components interact with the shield. The shield composed of a flexible strip or cylindrical body and respectively comprising a transverse conductive element or a transverse slot therein. The shields being adapted to cover an antenna mounted on the support. The shields being compatible for use in conjunction with saddle, tilted coils or multi-layered tri-axial coils to produce a pure transverse magnetic dipole electromagnetic field. The shields are also used in methods for shielding an antenna disposed on a support to provide predetermined attenuation of an electromagnetic field component as the field components interact with the shield.
    • 一种用于天线的屏蔽方法和装置,其设置在适于在钻孔内处理的细长支撑件上。 屏蔽层当场分量与屏蔽相互作用时提供一个或多个电磁能量场分量的预定衰减。 该屏蔽由柔性条或圆柱体组成,分别包括横向导电元件或横向槽。 屏蔽件适于覆盖安装在支撑件上的天线。 该屏蔽件与鞍座,倾斜线圈或多层三轴线圈结合使用以产生纯横向磁偶极电磁场。 屏蔽还用于屏蔽设置在支撑件上的天线的方法,以在场屏元件与屏蔽件相互作用时提供电磁场分量的预定衰减。
    • 37. 发明申请
    • SYSTEM AND METHOD FOR CONTROLLING AND MONITORING A DRILLING OPERATION USING REFINED SOLUTIONS FROM A PANISTIC INVERSION
    • 使用来自PANISTIC INVERSION的精炼解决方案来控制和监测钻井操作的系统和方法
    • US20130025939A1
    • 2013-01-31
    • US13191354
    • 2011-07-26
    • DENIS HELIOTSteven F. CraryJean Seydoux
    • DENIS HELIOTSteven F. CraryJean Seydoux
    • E21B47/00E21B7/04G01V3/00G01V9/00G06F19/00
    • E21B44/00E21B47/022G06Q50/02
    • During a drilling operation, measured data from the drilling operation may be received with a panistic inversion and risk estimate module. The panistic inversion and risk estimate module may generate a plurality of mathematical solutions from a panistic inversion that uses the measured data and one or more earth models. The one or more earth models having various parameters may be selected prior to drilling and/or while the drilling operation occurs. For each solution of the plurality of mathematical solutions generated from the panistic inversion, the panistic inversion and risk estimate module may determine if the measured data exceeds one or more probability risk thresholds associated with the drilling operation. If the measured data exceeds the probability risk threshold associated with the drilling operation, then the panistic inversion and risk estimate module may generate an alert.
    • 在钻井作业期间,钻井作业的测量数据可以采用全局反演和风险估算模块接收。 全局反演和风险估计模块可以从使用测量数据和一个或多个地球模型的平稳反演中产生多个数学解。 具有各种参数的一个或多个地球模型可以在钻井之前和/或在钻井操作发生时被选择。 对于从全局反演产生的多个数学解的每个解,平均反演和风险估计模块可以确定测量数据是否超过与钻井操作相关联的一个或多个概率风险阈值。 如果测量数据超过与钻井操作相关联的概率风险阈值,则全局反演和风险估计模块可能会产生警报。
    • 38. 发明申请
    • DIRECTIONAL RESISTIVITY MEASUREMENT FOR WELL PLACEMENT AND FORMATION EVALUATION
    • 方向电阻测量,用于井架和地层评估
    • US20110238312A1
    • 2011-09-29
    • US13030780
    • 2011-02-18
    • Jean SeydouxDzevat OmeragicDean M. Homan
    • Jean SeydouxDzevat OmeragicDean M. Homan
    • G06F19/00G01V3/08
    • G01V3/22G01V1/52G01V3/30
    • The present disclosure relates to a method to determine a formation property of a subsurface formation. A downhole logging tool having two or more antennas, at least two of the antennas having a transversely-sensitive element and an axially-sensitive element is provided. Azimuthally-sensitive measurements are obtained using the antennas of the downhole logging tool. The measurements are fitted to a Fourier series having Fourier coefficients that include channel gains, if any. A DC component, a first harmonic component, and a second harmonic component are determined from the Fourier series, a measurement type is determined using the DC component, the first harmonic component, and/or the second harmonic component, and the formation property of the subsurface formation is determined using the determined measurement type.
    • 本公开涉及确定地下地层的地层特性的方法。 一种具有两个或多个天线的井下测井工具,其中至少两个天线具有横向敏感元件和轴向敏感元件。 使用井下测井工具的天线获得方位角敏感测量。 这些测量值适用于傅立叶级数,其傅立叶系数包括通道增益(如果有的话)。 从傅里叶级数确定DC分量,一次谐波分量和二次谐波分量,使用DC分量,一次谐波分量和/或二次谐波分量来确定测量类型,并且确定 使用确定的测量类型确定地下地层。
    • 39. 发明授权
    • Systems for deep resistivity while drilling for proactive geosteering
    • 深层电阻率系统,用于主动地质导向钻井
    • US07093672B2
    • 2006-08-22
    • US10707985
    • 2004-01-29
    • Jean SeydouxDzevat OmeragicJacques R. Tabanou
    • Jean SeydouxDzevat OmeragicJacques R. Tabanou
    • E21B25/00G01J3/18
    • G01V3/28E21B7/04E21B47/00
    • A method for geosteering while drilling a formation includes generating a plurality of formation models for the formation, where each of the plurality of the formation models includes a set of parameters and a resistivity tool therein and locations of the resistivity tool differ in the plurality of the formation models. The method may also include computing predicted tool responses for the resistivity tool in the plurality of formation models, acquiring resistivity measurements using the resistivity tool in the formation, and determining an optimum formation model based on a comparison between the actual tool response and the predicted tool responses. The method may also include steering a bottom home assembly based on the optimum formation model.
    • 在钻孔地层时,用于地质导向的方法包括产生用于地层的多个地层模型,其中多个地层模型中的每一个包括一组参数和其中的电阻率工具,并且电阻率工具的位置在多个 形成模型。 该方法还可以包括计算多个地层模型中的电阻率工具的预测工具响应,使用地层中的电阻率工具获取电阻率测量值,以及基于实际的工具响应与预测的工具之间的比较来确定最佳地层模型 回应。 该方法还可以包括基于最佳形成模型来转向底部主组件。