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    • 4. 发明申请
    • HIGH SPEED DATA TRANSFER FOR MEASURING LITHOLOGY AND MONITORING DRILLING OPERATIONS
    • 用于测量岩石和监测钻井作业的高速数据传输
    • WO2009032595A3
    • 2011-11-03
    • PCT/US2008074206
    • 2008-08-25
    • BAKER HUGHES INCRECKMANN HANNOPUSHKAR JOGI
    • RECKMANN HANNOPUSHKAR JOGI
    • E21B47/12E21B49/00
    • E21B47/12E21B49/003
    • A system for determining at least one of a lithology of a formation traversed by a borehole and an operational condition of a component of a drill string disposed in the borehole, the system including: a sensor for performing downhole measurements of a drilling parameter, the sensor being disposed at least one of at and in the drill string; a high speed wired pipe telemetry system for transmitting the downhole measurements in real time, a processor coupled to the telemetry system for receiving the measurements, the processor disposed external to the drill string; and a computer processing system coupled to the processor, the computer processing system comprising a model that receives the downhole measurements and surface measurements of a drilling parameter as input, the model providing as output at least one of the lithology of the formation and the operational condition of the component.
    • 一种用于确定由钻孔穿过的地层的岩性和设置在钻孔中的钻柱的部件的操作条件中的至少一个的系统,所述系统包括:用于执行钻孔参数的井下测量的传感器,所述传感器 设置在钻柱中和在钻柱中的至少一个; 用于实时地传送井下测量的高速有线管道遥测系统,耦合到用于接收测量的遥测系统的处理器,设置在钻柱外部的处理器; 以及耦合到所述处理器的计算机处理系统,所述计算机处理系统包括接收钻井参数的井下测量和表面测量作为输入的模型,所述模型提供所述地层的岩性和所述操作条件中的至少一个 的组件。
    • 8. 发明申请
    • SYSTEM AND METHOD FOR CORRECTION OF DOWNHOLE MEASUREMENTS
    • 校正井下测量的系统和方法
    • WO2013043682A3
    • 2013-05-16
    • PCT/US2012056048
    • 2012-09-19
    • BAKER HUGHES INCSCHUBERTH FRANKHARTMANN ANDREASMAURER HANS-MARTINRECKMANN HANNO
    • SCHUBERTH FRANKHARTMANN ANDREASMAURER HANS-MARTINRECKMANN HANNO
    • E21B47/08E21B47/01E21B47/09
    • E21B47/00G01V11/00G01V11/005
    • A system for estimating downhole parameters includes: at least one parameter sensor disposed along a downhole component and configured to measure a parameter of one or more of a borehole and an earth formation and generate parameter data; and a processor in operable communication with the at least one parameter sensor, the processor configured to receive the parameter data and deformation data relating to deformation of the downhole component. The processor is configured to: generate a mathematical model of the downhole component deformation in real time based on pre-selected geometrical data representing the downhole component and the received deformation data; estimate, in real time, an alignment of the at least one parameter sensor relative to at least one of another parameter sensor and a desired alignment; and in response to estimating a misalignment of the at least one parameter sensor, correct the parameter data based on the misalignment.
    • 一种用于估计井下参数的系统包括:至少一个参数传感器,其沿着井下部件布置并且被配置为测量钻孔和地层中的一个或多个的参数并且生成参数数据; 以及与所述至少一个参数传感器可操作通信的处理器,所述处理器被配置为接收所述参数数据和与所述井下部件的变形有关的变形数据。 处理器被配置为:基于表示井下部件和接收到的变形数据的预先选择的几何数​​据实时地生成井下部件变形的数学模型; 实时估计所述至少一个参数传感器相对于另一个参数传感器和期望对准中的至少一个的对准; 并且响应于估计所述至少一个参数传感器的未对准,基于所述未对准来校正所述参数数据。
    • 9. 发明申请
    • REAL TIME MISALIGNMENT CORRECTION OF INCLINATION AND AZIMUTH MEASUREMENTS
    • 倾斜度和方位角测量的实时误差校正
    • WO2009103059A2
    • 2009-08-20
    • PCT/US2009034283
    • 2009-02-17
    • BAKER HUGHES INCRECKMANN HANNOSCHUBERT FRANKSANDELMANN BERND
    • RECKMANN HANNOSCHUBERT FRANKSANDELMANN BERND
    • E21B47/022E21B47/06E21B47/08G01C9/00
    • E21B47/024E21B7/062
    • A method for determining wellbore trajectory includes determining survey parameters in the wellbore; measuring force parameter(s) in the wellbore; and correcting the survey parameters using the measured force parameter(s). The downhole measured force parameters may include forces associated with an operation of a steering device such as an internal reaction force, and /or a bending moment. In variants, the method may include measuring a wellbore temperature; measuring a wellbore parameter in addition to the temperature; and correcting a survey parameter using the measured parameter and the measured temperature. These methods may include correcting survey parameters using measured wellbore diameters. Also, a processor in the wellbore may be programmed to perform the correction while in the wellbore and / or control a steering device using measurements provided by a sensor for measuring internal reaction forces.
    • 确定井筒轨迹的方法包括确定井眼中的勘测参数; 测量井筒中的力参数; 并使用测量的力参数来校正测量参数。 井下测量的力参数可以包括与转向装置的操作相关联的力,例如内部反作用力和/或弯曲力矩。 在变体中,该方法可以包括测量井筒温度; 测量除温度外的井筒参数; 以及使用所测量的参数和所测量的温度来校正测量参数。 这些方法可能包括使用测量的井眼直径校正测量参数。 而且,井眼中的处理器可以被编程为在井眼中执行校正和/或使用由传感器提供的用于测量内部反作用力的测量来控制转向装置。