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    • 53. 发明授权
    • Method of reservoir characterization and delineation based on observations of displacements at the earth's surface
    • 基于地球表面位移观测的储层表征和描绘方法
    • US08355873B2
    • 2013-01-15
    • US11288826
    • 2005-11-29
    • Ali MeseSyed HamidDingding ChenHarry D. Smith, Jr.John HowardNeal Skinner
    • Ali MeseSyed HamidDingding ChenHarry D. Smith, Jr.John HowardNeal Skinner
    • G01V9/00
    • G01V11/00
    • Reservoir characterization based on observations of displacements at the earth's surface. One method of characterizing a reservoir includes the steps of: detecting a response of the reservoir to a stimulus, the stimulus causing a pressure change in the reservoir; and determining a characteristic of the reservoir from the response to the stimulus. The response may be the pressure change which varies periodically over time, or a set of displacements of a surface of the earth. In another example, a method includes the steps of: detecting a set of displacements of the earth's surface corresponding to a pressure change in the reservoir; and determining a characteristic of the reservoir from the surface displacements. In yet another example, a method includes the steps of: detecting a set of displacements of the earth's surface corresponding to a change in volume of the reservoir; and determining a characteristic of the reservoir from the surface displacements.
    • 基于地球表面位移观测的油藏特征。 表征储层的一种方法包括以下步骤:检测储层对刺激的响应,所述刺激导致储层中的压力变化; 以及从所述刺激的响应确定所述储层的特性。 响应可以是随时间周期性地变化的压力变化或地球表面的一组位移。 在另一示例中,一种方法包括以下步骤:检测对应于储层中的压力变化的地球表面的一组位移; 以及从表面位移确定储层的特征。 在又一示例中,一种方法包括以下步骤:检测对应于储层体积变化的地球表面的一组位移; 以及从表面位移确定储层的特征。
    • 56. 发明申请
    • REAL-TIME MANAGEMENT SYSTEM FOR SLICKLINE/WIRELINE
    • SLICKLINE / WIRELINE实时管理系统
    • US20090013774A1
    • 2009-01-15
    • US12239290
    • 2008-09-26
    • Orlando De JesusRichard MineoJerry Clinton FosterSyed Hamid
    • Orlando De JesusRichard MineoJerry Clinton FosterSyed Hamid
    • E21B47/00
    • G01L5/047E21B19/22
    • A real-time line management system and associated methods. A line management system for use in conjunction with an operation in a subterranean well includes a line installed in the well during the operation, and a computing device which indicates a used life of the line during the operation. A method of managing a line used in an operation in a subterranean well includes the steps of: installing the line in the well during the operation; and determining a used life of the line while the line is installed in the well. A method of managing a line used in multiple operations in one or more subterranean wells includes the steps of: estimating conditions which will be experienced by the line during a future operation; and predicting before the future operation what a used life of the line will be after the line is used in the future operation.
    • 实时线路管理系统及相关方法。 与地下井中的操作一起使用的线路管理系统包括在操作期间安装在井中的线以及指示在操作期间线路的使用寿命的计算设备。 一种管理在地下井中的操作中使用的管线的方法包括以下步骤:在操作期间将管线安装在井中; 并且在将线安装在井中时确定线的使用寿命。 一种管理在一个或多个地下井中的多个操作中使用的管线的方法包括以下步骤:估计将来操作期间该管线将经历的条件; 并在未来的运营前预测该线路的使用寿命将在将来运行后使用。
    • 57. 发明授权
    • Real time management system for slickline/wireline
    • 钢丝绳/线缆的实时管理系统
    • US07444861B2
    • 2008-11-04
    • US11284863
    • 2005-11-22
    • Orlando De JesusRichard MineoJerry Clinton FosterSyed Hamid
    • Orlando De JesusRichard MineoJerry Clinton FosterSyed Hamid
    • G01L5/00
    • G01L5/047E21B19/22
    • A real-time line management system and associated methods. A line management system for use in conjunction with an operation in a subterranean well includes a line installed in the well during the operation, and a computing device which indicates a used life of the line during the operation. A method of managing a line used in an operation in a subterranean well includes the steps of: installing the line in the well during the operation; and determining a used life of the line while the line is installed in the well. A method of managing a line used in multiple operations in one or more subterranean wells includes the steps of: estimating conditions which will be experienced by the line during a future operation; and predicting before the future operation what a used life of the line will be after the line is used in the future operation.
    • 实时线路管理系统及相关方法。 与地下井中的操作一起使用的线路管理系统包括在操作期间安装在井中的线以及指示在操作期间线路的使用寿命的计算设备。 一种管理在地下井中的操作中使用的管线的方法包括以下步骤:在操作期间将管线安装在井中; 并且在将线安装在井中时确定线的使用寿命。 一种管理在一个或多个地下井中的多个操作中使用的管线的方法包括以下步骤:估计将来操作期间该管线将经历的条件; 并在未来的运营前预测该线路的使用寿命将在将来运行后使用。
    • 58. 发明申请
    • Method of reservoir characterization and delineation based on observations of displacements at the earth's surface
    • 基于地球表面位移观测的储层表征和描绘方法
    • US20070124079A1
    • 2007-05-31
    • US11288826
    • 2005-11-29
    • Ali MeseSyed HamidDingding ChenHarry SmithJohn HowardNeal Skinner
    • Ali MeseSyed HamidDingding ChenHarry SmithJohn HowardNeal Skinner
    • G01N15/08G01V1/40
    • G01V11/00
    • Reservoir characterization based on observations of displacements at the earth's surface. One method of characterizing a reservoir includes the steps of: detecting a response of the reservoir to a stimulus, the stimulus causing a pressure change in the reservoir; and determining a characteristic of the reservoir from the response to the stimulus. The response may be the pressure change which varies periodically over time, or a set of displacements of a surface of the earth. In another example, a method includes the steps of: detecting a set of displacements of the earth's surface corresponding to a pressure change in the reservoir; and determining a characteristic of the reservoir from the surface displacements. In yet another example, a method includes the steps of: detecting a set of displacements of the earth's surface corresponding to a change in volume of the reservoir; and determining a characteristic of the reservoir from the surface displacements.
    • 基于地球表面位移观测的油藏特征。 表征储层的一种方法包括以下步骤:检测储层对刺激的响应,所述刺激导致储层中的压力变化; 以及从所述刺激的响应确定所述储层的特性。 响应可以是随时间周期性地变化的压力变化或地球表面的一组位移。 在另一示例中,一种方法包括以下步骤:检测对应于储层中的压力变化的地球表面的一组位移; 以及从表面位移确定储层的特征。 在又一示例中,一种方法包括以下步骤:检测对应于储层体积变化的地球表面的一组位移; 以及从表面位移确定储层的特征。