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    • 2. 发明申请
    • SYSTEM AND METHOD FOR ECCENTERING CORRECTION
    • 用于校正校正的系统和方法
    • WO2016179512A1
    • 2016-11-10
    • PCT/US2016/031243
    • 2016-05-06
    • GENERAL ELECTRIC COMPANY
    • LEXA, Michael, AnthonyGANESH, MeenaSMAARDYK, John, EdwardSTEINMAN, Donald, K.
    • G01V5/08
    • G01V5/12G01T7/005G01V5/08
    • A system for generating eccentering corrected response includes a logging tool configured to examine a material filled in an annular space to generate a tool response. The material is filled in an annular space formed by an outer conduit and an inner conduit disposed in the outer conduit. The logging tool is disposed in an inner conduit. The tool response includes scattered gamma ray photon counts distorted by a radial shift of the logging tool. The system includes a data transmission device coupled to a plurality of detectors and configured to transmit data detected by the plurality of detectors. The system also includes a computer processor linked to the data transmission device and configured to receive the tool response. The computer processor is configured to process the tool response and generate an eccentered corrected response by correcting effects of the radial shift in the tool response using eccentering correction technique.
    • 用于产生偏心校正响应的系统包括记录工具,其被配置为检查填充在环形空间中的材料以产生工具响应。 该材料填充在由外导管和设置在外导管中的内导管形成的环形空间中。 测井工具设置在内导管中。 工具响应包括由测井工具的径向偏移扭曲的散射的伽马射线光子计数。 该系统包括耦合到多个检测器并被配置为发送由多个检测器检测到的数据的数据传输设备。 该系统还包括连接到数据传输设备并被配置为接收工具响应的计算机处理器。 计算机处理器被配置为通过使用偏心校正技术校正工具响应中的径向偏移的影响来处理工具响应并产生偏心校正的响应。
    • 3. 发明申请
    • CEMENT EVALUATION WITH X-RAY TOMOGRAPHY
    • 水平评估与X射线TOMOGRAPHY
    • WO2016153523A1
    • 2016-09-29
    • PCT/US2015/022729
    • 2015-03-26
    • HALLIBURTON ENERGY SERVICES, INC.
    • HU, YikeGUO, Weijun
    • E21B47/00G01V5/04G01V5/12
    • G01V5/08E21B47/0005
    • A tool can include an X-ray tomography device to evaluate cement in a downhole environment. The X-ray tomography device includes an X-ray beam source configured to transmit an X-ray beam at a first predetermined angle. The beam angle may be set by a capillary device coupled to the X-ray beam source. An energy dispersive, multi-pixel photon detector is configured to count detected backscatter photons received at a second predetermined angle and determine an energy spectrum for the detected photons. A density map of the cement may be generated in response to the number of detected photons. Additional apparatus, systems, and methods are disclosed.
    • 工具可以包括用于在井下环境中评估水泥的X射线断层摄影装置。 X射线断层摄影装置包括被配置为以第一预定角度发射X射线束的X射线束源。 束角可以由耦合到X射线束源的毛细管装置来设定。 能量色散多像素光子检测器被配置为对以第二预定角度接收的检测到的反向散射光子进行计数,并确定检测到的光子的能谱。 可以响应于检测到的光子的数量而产生水泥的密度图。 公开了附加装置,系统和方法。
    • 5. 发明申请
    • METHODS AND MEANS FOR CREATING THREE-DIMENSIONAL BOREHOLE IMAGE DATA
    • 用于创建三维孔洞图像数据的方法和手段
    • WO2015150883A1
    • 2015-10-08
    • PCT/IB2014/064991
    • 2014-10-01
    • VISURAY INTECH LTD.TEAGUE, Philip
    • TEAGUE, PhilipSOFIIENKO, AndriiPONCE, DavidVOLL, Ådne
    • G01V5/12
    • G01V5/08G01N23/203G01N23/204G01V5/125
    • A method of creating three-dimensional borehole data is provided, including illuminating a borehole using collimated beams of electromagnetic radiation; rotating the collimated beams in a sweep of at least 360 degrees; detecting backscattered electromagnetic radiation returned from surfaces of associated illumination planes using electromagnetic radiation sensors; converting detected radiation into a corresponding set of volume image data; analyzing the volume image data using computational visualization processing techniques; and creating a three-dimensional image representative of the volume data. Imaging methodologies include a complete, radial conic-shaped surface while the imaging system remains stationary; a plurality of scans performed while longitudinally moving the imaging system a distance d through the borehole between image capture operations; and a plurality of scans performed while longitudinally moving the imaging system a distance d , where d is a distance less than or equal to the collimated beam thickness, so that adjacent scans partially overlap.
    • 提供了一种创建三维钻孔数据的方法,包括使用准直的电磁辐射束照射钻孔; 以至少360度的扫描旋转准直光束; 使用电磁辐射传感器检测从相关照明平面表面返回的反向散射电磁辐射; 将检测到的辐射转换成相应的一组体积图像数据; 使用计算可视化处理技术分析体积图像数据; 以及创建代表体数据的三维图像。 成像方法包括完整的径向圆锥形表面,而成像系统保持静止; 在图像拍摄操作之间沿纵向移动成像系统通过钻孔的距离d执行多次扫描; 以及在将成像系统纵向移动距离d的同时进行多次扫描,其中d是小于或等于准直光束厚度的距离,使得相邻的扫描部分重叠。