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    • 3. 发明申请
    • LOG PROCESSING IN HIGHLY DEVIATED WELLBORES
    • 在高度评价的啤酒桶中进行日志处理
    • US20100312478A1
    • 2010-12-09
    • US12712704
    • 2010-02-25
    • JACQUES R. TABANOUJohn C. RasmusJohn P. HorkowitzKoji ItoChristian StolteShahzad AsifBernadette Tabanou
    • JACQUES R. TABANOUJohn C. RasmusJohn P. HorkowitzKoji ItoChristian StolteShahzad AsifBernadette Tabanou
    • G01V3/18G01V3/20G01V3/32G06F19/00G01V3/38
    • G01V11/00G01V2210/1429
    • A method for processing well logging data includes method dividing the well logging data into a number of constant dimensional effect segments, where each constant dimensional effect segment defines an interval having a similar dimensional effect on the log response. The well logging data is taken from a highly deviated well, which may include portions deviated at greater than 90-degrees. The method further includes dividing the constant dimensional effect segments into a number of constant property intervals, each constant dimensional effect segment including at least one corresponding constant property interval, and each constant property interval defining a wellbore distance over which a formation property is substantially constant that results in a log response having a low variance. The method further includes providing the constant property intervals to an output device. The method further includes determining constant property intervals in 3D volume space projected them into true stratigraphic thickness, and providing the resulting log-squared data to the output device.
    • 一种用于处理测井数据的方法包括将测井数据分成多个恒定维度效应段的方法,其中每个恒定维度效应段定义具有与对数响应相似的尺寸效应的间隔。 测井数据取自高度偏差的井,其可以包括偏离大于90度的部分。 所述方法还包括将恒定维数效应段划分成多个恒定特性间隔,每个恒定维度效应段包括至少一个对应的恒定特性间隔,以及每个常数特性间隔,其定义井眼距离, 导致具有低方差的对数响应。 该方法还包括向输出设备提供恒定的属性间隔。 该方法还包括确定3D体积空间中的恒定属性间隔将它们投影成真实的地层厚度,并将所得的对数平方数据提供给输出装置。
    • 5. 发明授权
    • Log processing in highly deviated wellbores
    • 日志处理在高度偏差的井筒中
    • US08473212B2
    • 2013-06-25
    • US12712704
    • 2010-02-25
    • John C. RasmusJohn P. HorkowitzKoji ItoChristian StolteShahzad AsifBernadette Tabanou
    • Jacques R. TabanouJohn C. RasmusJohn P. HorkowitzKoji ItoChristian StolteShahzad Asif
    • G01V1/40
    • G01V11/00G01V2210/1429
    • A method for processing well logging data includes method dividing the well logging data into a number of constant dimensional effect segments, where each constant dimensional effect segment defines an interval having a similar dimensional effect on the log response. The well logging data is taken from a highly deviated well. The method further includes dividing the constant dimensional effect segments into a number of constant property intervals, each constant dimensional effect segment including at least one corresponding constant property interval, and each constant property interval defining a wellbore distance over which a formation property is substantially constant that results in a log response having a low variance. The method further includes providing the constant property intervals to an output device. The method further includes determining constant property intervals in 3D volume space projected them into true stratigraphic thickness, and providing the resulting log-squared data to the output device.
    • 一种用于处理测井数据的方法包括将测井数据分成多个恒定维度效应段的方法,其中每个恒定维度效应段定义具有与对数响应相似的尺寸效应的间隔。 测井数据取自高度偏差的井。 所述方法还包括将恒定维数效应段划分成多个恒定特性间隔,每个恒定维度效应段包括至少一个对应的恒定特性间隔,以及每个常数特性间隔,其定义井眼距离, 导致具有低方差的对数响应。 该方法还包括向输出设备提供恒定的属性间隔。 该方法还包括确定3D体积空间中的恒定属性间隔将它们投影成真实的地层厚度,并将所得的对数平方数据提供给输出装置。
    • 6. 发明申请
    • System and Method for Downhole Time-of-Flight Sensing, Remote NMR Detection of Fluid Flow in Rock Formations
    • 井下时间飞行感知的系统和方法,岩层流体流动的远程NMR检测
    • US20080136409A1
    • 2008-06-12
    • US11608469
    • 2006-12-08
    • Pabitra N. SenYi-Qiao SongJohn P. Horkowitz
    • Pabitra N. SenYi-Qiao SongJohn P. Horkowitz
    • G01V3/14
    • G01V3/32
    • A system and method for measuring fluid flow in a wellbore in an earth formation using time-of-flight (TOF) sensing and remote detection nuclear magnetic resonance (NMR) techniques, by applying a magnetic field to the formation to polarize spins present in a portion of the formation, providing an encoding shell in the formation, selecting an encoding volume from the encoding shell, applying an encoding signal to excite the spins in the encoding volume, introducing a time delay to the encoding signal, providing a detection shell in the formation, applying a detection signal to the detection shell, detecting an NMR signal generated by the migration of spins from the encoding shell to the detection shell, and collecting TOF data corresponding to time elapsed from when a spin is encoded to when the spin reaches the detection shell.
    • 使用飞行时间(TOF)感测和远程检测核磁共振(NMR)技术测量地层中的井眼中的流体流动的系统和方法,通过对地层施加磁场以使存在于 在地层中提供编码外壳,从编码外壳中选择编码体积,应用编码信号来激励编码体积中的自旋,向编码信号引入时间延迟,在编码信号中提供检测外壳 形成,向检测壳施加检测信号,检测通过旋转从编码壳向检测壳的迁移而产生的NMR信号,以及收集对应于从旋转编码到自旋达到时间的时间的TOF数据 检测壳。
    • 9. 发明授权
    • System and method for downhole time-of-flight sensing, remote NMR detection of fluid flow in rock formations
    • 井下飞行时间感测的系统和方法,岩层中流体流动的远程核磁共振检测
    • US07528600B2
    • 2009-05-05
    • US11608469
    • 2006-12-08
    • Pabitra N. SenYi-Qiao SongJohn P. Horkowitz
    • Pabitra N. SenYi-Qiao SongJohn P. Horkowitz
    • G01V3/00
    • G01V3/32
    • A system and method for measuring fluid flow in a wellbore in an earth formation using time-of-flight (TOF) sensing and remote detection nuclear magnetic resonance (NMR) techniques, by applying a magnetic field to the formation to polarize spins present in a portion of the formation, providing an encoding shell in the formation, selecting an encoding volume from the encoding shell, applying an encoding signal to excite the spins in the encoding volume, introducing a time delay to the encoding signal, providing a detection shell in the formation, applying a detection signal to the detection shell, detecting an NMR signal generated by the migration of spins from the encoding shell to the detection shell, and collecting TOF data corresponding to time elapsed from when a spin is encoded to when the spin reaches the detection shell.
    • 使用飞行时间(TOF)感测和远程检测核磁共振(NMR)技术测量地层中的井眼中的流体流动的系统和方法,通过对地层施加磁场以使存在于 在地层中提供编码外壳,从编码外壳中选择编码体积,应用编码信号来激励编码体积中的自旋,向编码信号引入时间延迟,在编码信号中提供检测外壳 形成,向检测壳施加检测信号,检测通过旋转从编码壳向检测壳的迁移而产生的NMR信号,以及收集对应于从旋转编码到自旋达到时间的时间的TOF数据 检测壳。