会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Method for characterizing a subsurface formation with a logging instrument disposed in a borehole penetrating the formation
    • 用设置在穿透地层的钻孔中的测井仪表征地下地层的方法
    • US07202670B2
    • 2007-04-10
    • US10710188
    • 2004-06-24
    • Dzevat OmeragicQiming LiLawrence ChouLibo YangChengbing LiuJan Smits
    • Dzevat OmeragicQiming LiLawrence ChouLibo YangChengbing LiuJan Smits
    • G01B3/08
    • G01V3/28
    • A method is described for characterizing a subsurface formation with a logging instrument disposed in a borehole penetrating the formation. The logging instrument is equipped with at least a transmitter system and a receiver system. The method entails positioning the logging instrument within the borehole so that the transmitter system and receiver system are disposed in the vicinity of a formation boundary of interest and measuring the azimuthal orientation of the logging instrument. Electromagnetic energy is transmitted into the formation using the transmitter system and signals associated with the transmitted electromagnetic energy are measured using the receiver system. The method further entails determining the relative azimuth of the formation boundary, composing a symmetrized directional measurement using the measured signals and the determined relative boundary azimuth, and determining the relative dip of the formation boundary using the composed directional measurement.
    • 描述了用设置在穿透地层的井眼中的测井仪表征地下地层的方法。 测井仪器至少配备有发射机系统和接收机系统。 该方法需要将测井仪器定位在钻孔内,使得发射机系统和接收机系统被布置在感兴趣的地层边界附近并测量测井仪器的方位角取向。 使用发射机系统将电磁能量传输到地层中,并且使用接收机系统测量与所传输的电磁能相关联的信号。 该方法还需要确定地层边界的相对方位角,使用测量的信号和确定的相对边界方位组成对称的方向测量,以及使用组合的方向测量来确定地层边界的相对倾角。
    • 3. 发明授权
    • Directional electromagnetic wave resistivity apparatus and method
    • 定向电磁波电阻率装置及方法
    • US07382135B2
    • 2008-06-03
    • US10709212
    • 2004-04-21
    • Qiming LiLawrence ChouDzevat OmeragicLibo YangAlain DumontLingyun Hu
    • Qiming LiLawrence ChouDzevat OmeragicLibo YangAlain DumontLingyun Hu
    • G01B3/08
    • G01V3/28G01V3/30
    • A novel on-the-fly data processing technique is useful for extracting signals from the azimuthal variation of the directional measurements acquired by a logging tool within a borehole. The relevant boundary, anisotropy and fracture signals are extracted from the formation response through fitting of the azimuthal variation of the measured voltages to some sinusoidal functions. The orientation of the bedding is also obtained as a result. The extracted directional signals are useful for obtaining boundary distances and making geosteering decisions. Two techniques involving inversion and cross-plotting may be employed, depending on the nature of the boundary. A Graphical User Interface (GUI) is part of a system to facilitate flexible definition of inversion objectives, for improving the inversion results, and for visualization of the formation model as well as inversion measurements.
    • 一种新颖的实时数据处理技术可用于从钻孔内的测井工具获取的方向测量的方位角变化中提取信号。 通过将测量电压的方位角变化拟合到某些正弦函数,从形成响应中提取相关边界,各向异性和断裂信号。 因此也获得了床上用品的取向。 提取的方向信号对于获得边界距离和进行地理转向决定是有用的。 取决于边界的性质,可以采用涉及倒置和交叉绘图的两种技术。 图形用户界面(GUI)是系统的一部分,以便于灵活地定义反演目标,改善反演结果,以及形成模型的可视化以及反演测量。
    • 4. 发明申请
    • DIRECTIONAL ELECTROMAGNETIC WAVE RESISTIVITY APPARATUS AND METHOD
    • 方向电磁波电阻率装置及方法
    • US20050140373A1
    • 2005-06-30
    • US10709212
    • 2004-04-21
    • Qiming LiLawrence ChouDzevat OmeragicLibo YangAlain DumontLingyun Hu
    • Qiming LiLawrence ChouDzevat OmeragicLibo YangAlain DumontLingyun Hu
    • G01V3/28G01V3/30G01V3/18
    • G01V3/28G01V3/30
    • A novel on-the-fly data processing technique is useful for extracting signals from the azimuthal variation of the directional measurements acquired by a logging tool within a borehole. The relevant boundary, anisotropy and fracture signals are extracted from the formation response through fitting of the azimuthal variation of the measured voltages to some sinusoidal functions. The orientation of the bedding is also obtained as a result. The extracted directional signals are useful for obtaining boundary distances and making geosteering decisions. Two techniques involving inversion and cross-plotting may be employed, depending on the nature of the boundary. A Graphical User Interface (GUI) is part of a system to facilitate flexible definition of inversion objectives, for improving the inversion results, and for visualization of the formation model as well as inversion measurements.
    • 一种新颖的实时数据处理技术可用于从钻孔内的测井工具获取的方向测量的方位角变化中提取信号。 通过将测量电压的方位角变化拟合到某些正弦函数,从形成响应中提取相关边界,各向异性和断裂信号。 因此也获得了床上用品的取向。 提取的方向信号对于获得边界距离和进行地理转向决定是有用的。 取决于边界的性质,可以采用涉及倒置和交叉绘图的两种技术。 图形用户界面(GUI)是系统的一部分,以便于灵活地定义反演目标,改善反演结果,以及形成模型的可视化以及反演测量。
    • 5. 发明授权
    • Shoulder bed effects removal
    • 肩部床效应消除
    • US07599825B2
    • 2009-10-06
    • US11279203
    • 2006-04-10
    • Jian YangDzevat OmeragicChengbing LiuQiming LiJan W. SmitsYanqing ZengHelene C. Climent
    • Jian YangDzevat OmeragicChengbing LiuQiming LiJan W. SmitsYanqing ZengHelene C. Climent
    • G06G7/48G01V3/18G01V3/00
    • G01V3/24
    • Various technologies for removing shoulder-bed effects from measurements of an earth formation made in a wellbore. In one implementation, a methodology for removing the shoulder-bed effects includes receiving the measurements and constructing a layered model of the earth formation. Each layer has a set of parameters corresponding to one or more types of the received measurements ascribed to each layer such that the set of parameters define a parameter space for the layered model. The methodology may further include dividing the parameter space into subspaces based on relationships among the parameters, selecting from the subspaces one or more starting points, minimizing a cost function using the one or more starting points to generate one or more candidate solutions having the shoulder-bed effects removed and selecting a final solution from the one or more candidate solutions.
    • 用于通过测量在井眼中产生的地层的各种技术来消除肩膀床效应。 在一个实施方案中,用于去除肩膀床效应的方法包括接收测量并构建地层的分层模型。 每个层具有对应于归属于每个层的接收的测量的一种或多种类型的参数的集合,使得该组参数定义分层模型的参数空间。 该方法可以进一步包括:基于参数之间的关系将参数空间划分为子空间,从子空间中选择一个或多个起始点,使用一个或多个起始点使成本函数最小化,以生成具有肩峰位置的一个或多个候选解, 床效应被消除,并从一个或多个候选解决方案中选择最终解决方案。
    • 9. 发明授权
    • Multilevel workflow method to extract resistivity anisotropy data from 3D induction measurements
    • 从三维感应测量中提取电阻率各向异性数据的多级工作流程方法
    • US08433518B2
    • 2013-04-30
    • US12888232
    • 2010-09-22
    • Dzevat OmeragicKeli SunQiming LiTarek Habashy
    • Dzevat OmeragicKeli SunQiming LiTarek Habashy
    • G01V1/40G01V3/10G06G7/48
    • G01V3/20G01V3/28
    • A method is provided for determining formation resistivity, anisotropy and dip from wellbore measurements includes moving a well logging instrument through subsurface formations. The instrument includes longitudinal magnetic dipoles and at least one of tilted and transverse magnetic dipoles. Formation layer boundaries and horizontal resistivities of the formation layers are determined from longitudinal magnetic dipole measurements. Vertical resistivities of the formation layers are determined by inversion of anisotropy sensitive measurements. Improved vertical resistivities of the formation layers and dips are determined by inverting symmetrized and anti-symmetrized measurements. Improved vertical resistivities, improved boundaries and improved dips are determined by inversion of the all dipole measurements. Improved horizontal resistivities, further improved layer boundaries and further improved dips are determined by inversion of all dipole measurements.
    • 提供了一种用于确定井眼测量的地层电阻率,各向异性和倾角的方法,包括通过地下地层移动测井仪器。 仪器包括纵向磁偶极子和倾斜和横向磁偶极子中的至少一个。 由纵向磁偶极子测量确定地层的形成层边界和水平电阻率。 通过各向异性敏感测量的反演确定形成层的垂直电阻率。 通过反转对称和反对称测量来确定形成层和浸渍层的垂直电阻率的改善。 通过所有偶极子测量的反演来确定改善的垂直电阻率,改善的边界和改善的倾角。 通过所有偶极子测量的反演来确定改进的水平电阻率,进一步改善的层边界和进一步改善的下降。
    • 10. 发明申请
    • MULTILEVEL WORKFLOW METHOD TO EXTRACT RESISTIVITY ANISOTROPY DATA FROM 3D INDUCTION MEASUREMENTS
    • 从三维感应测量中提取电阻率数据的多工作流方法
    • US20110231098A1
    • 2011-09-22
    • US12888232
    • 2010-09-22
    • Dzevat OmeragicKeli SunQiming LiTarek Habashy
    • Dzevat OmeragicKeli SunQiming LiTarek Habashy
    • G01V3/12G06F19/00
    • G01V3/20G01V3/28
    • A method is provided for determining formation resistivity, anisotropy and dip from wellbore measurements includes moving a well logging instrument through subsurface formations. The instrument includes longitudinal magnetic dipoles and at least one of tilted and transverse magnetic dipoles. Formation layer boundaries and horizontal resistivities of the formation layers are determined from longitudinal magnetic dipole measurements. Vertical resistivities of the formation layers are determined by inversion of anisotropy sensitive measurements. Improved vertical resistivities of the formation layers and dips are determined by inverting symmetrized and anti-symmetrized measurements. Improved vertical resistivities, improved boundaries and improved dips are determined by inversion of the all dipole measurements. Improved horizontal resistivities, further improved layer boundaries and further improved dips are determined by inversion of all dipole measurements.
    • 提供了一种用于确定井眼测量的地层电阻率,各向异性和倾角的方法,包括通过地下地层移动测井仪器。 仪器包括纵向磁偶极子和倾斜和横向磁偶极子中的至少一个。 由纵向磁偶极子测量确定地层的形成层边界和水平电阻率。 通过各向异性敏感测量的反演确定形成层的垂直电阻率。 通过反转对称和反对称测量来确定形成层和浸渍层的垂直电阻率的改善。 通过所有偶极子测量的反演来确定改善的垂直电阻率,改善的边界和改善的倾角。 通过所有偶极子测量的反演来确定改进的水平电阻率,进一步改善的层边界和进一步改善的下降。