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
    • 3. 发明授权
    • Method of interpreting induction logs in horizontal wells
    • 解释水平井中的感应测井的方法
    • US06308136B1
    • 2001-10-23
    • US09519029
    • 2000-03-03
    • Leonty A. TabarovskyMichael Boris RabinovichDavid R. Beard
    • Leonty A. TabarovskyMichael Boris RabinovichDavid R. Beard
    • G01V338
    • G01V3/38G01V3/28
    • An induction logging tool is used in an inclined borehole for determining properties of subsurface formations formation away from the borehole. Measurements are made at a plurality of transmitter-receiver (T-R) distances. After correction of the data for skin effects and optionally correcting for eddy currents within the borehole, the shallow measurements (those from short T-R spacing or from high frequency data) are inverted to give a model of the near borehole (invaded zone resistivity and diameter) and the resistivity of the formation outside the invaded zone. Using this model, a prediction is made of the data measured by the mid-level and deep sensors (long T-R spacings). A discrepancy between these predicted values and the actual measurements made by the midlevel and deep sensors is indicative of additional layer boundaries in the proximity of the wellbore.
    • 感应测井工具用于倾斜钻孔,用于确定远离钻孔的地下地层形成的性质。 在多个发射机 - 接收机(T-R)距离进行测量。 在校正了皮肤效应的数据并可选地校正钻孔内的涡流之后,浅测量(来自短TR间距或高频数据的那些)被反转以给出近钻孔的模型(入侵区电阻率和直径) 以及入侵区外的地层电阻率。 使用该模型,预测由中级和深层传感器测量的数据(长T-R间距)。 这些预测值与由中级和深度传感器进行的实际测量之间的差异表示在井筒附近的附加层边界。
    • 4. 发明授权
    • Electrical imager operating in oil-based mud and low resistive formation
    • 电子成像仪在油基泥浆中操作,低电阻形成
    • US08862406B2
    • 2014-10-14
    • US13346263
    • 2012-01-09
    • Gregory B. ItskovichDavid R. BeardFei Le
    • Gregory B. ItskovichDavid R. BeardFei Le
    • G01V1/40G01V3/20G01V5/04
    • G01V3/20
    • This disclosure relates to apparatuses and methods for reducing current leakage between a measure electrode and a logging tool body during borehole investigations in an earth formation involving electric current and non-conductive drilling fluid. The apparatus may include one or more transmitters disposed on a pad body, configured to inject an electric current into the earth formation, and coupled to the mandrel and one or more measure electrodes. The measure electrodes may be configured to receive current from the formation and coupled to a back plate of the pad body. The apparatus may be configured to maintain a selected ratio between pad body to logging tool body impedance and transmitters to logging tool body impedance sufficient to reduce current leakage between the earth formation and the logging tool body. The transmitter/mandrel and measure electrode/back plate may be electrically isolated from one another. The method may include using the apparatus.
    • 本公开涉及用于在包括电流和非导电钻井液的地层中的井眼研究期间减小测量电极和测井工具主体之间的电流泄漏的装置和方法。 设备可以包括设置在垫体上的一个或多个发射器,其被配置为将电流注入到地层中,并且耦合到心轴和一个或多个测量电极。 测量电极可以被配置为从地层接收电流并且耦合到衬垫本体的背板。 该装置可以被配置为保持衬垫主体与测井工具主体阻抗之间的选定比率,并且将发射器保持在足以减小地球形成和测井工具主体之间的电流泄漏的工具体阻抗。 发射器/心轴和测量电极/背板可以彼此电隔离。 该方法可以包括使用该装置。
    • 5. 发明申请
    • TOROID GALVANIC AZIMUTHAL LWD TOOL
    • TOROID GALVANIC AZIMUTHAL LWD工具
    • US20110221442A1
    • 2011-09-15
    • US13041995
    • 2011-03-07
    • Hans-Martin MaurerDavid R. BeardRashid W. Khokar
    • Hans-Martin MaurerDavid R. BeardRashid W. Khokar
    • G01V3/18
    • G01V3/28
    • An apparatus and method for estimating a parameter of interest of an earth formation, particularly relating to borehole logging methods and apparatuses for estimating electrical resistivity properties using at least one transverse toroid. The apparatus may include one or more transmitters for introducing electrical current to the earth formation. The transverse toroid may detect responsive electric signals from the earth formation at one or more frequencies and provide data from one or more depths of investigation. Further multiple transverse toroids may be used for detecting electric signals from a larger azimuthal range than a single transverse toroid. The method includes steps for using the apparatus to obtain data that may be used to estimate the parameter of interest.
    • 一种用于估计地层的关注参数的装置和方法,特别是涉及用于使用至少一个横向环形圈估计电阻率性质的钻孔测井方法和装置。 该装置可以包括用于将电流引入地层的一个或多个发射器。 横向环形线圈可以以一个或多个频率检测来自地层的响应电信号,并从一个或多个调查深度提供数据。 可以使用多个横向环形圈来检测比单个横向环形圈更大的方位范围的电信号。 该方法包括使用该装置来获得可用于估计感兴趣的参数的数据的步骤。
    • 6. 发明申请
    • Apparatus and Method for Reducing Effects of Eccentricity in Induction Tools
    • 降低感应工具偏心效应的装置和方法
    • US20110006775A1
    • 2011-01-13
    • US12832678
    • 2010-07-08
    • Sheng FangDavid R. Beard
    • Sheng FangDavid R. Beard
    • G01V3/18
    • G01V3/28
    • In aspects, an apparatus for use in a wellbore for determining a property of an earth formation is provided. The apparatus, in one embodiment, may include a tool body including a transmitter configured to induce electromagnetic waves in an earth formation, a receiver configured to provide signals responsive to the induced electromagnetic waves, a conductive member between the transmitter and the receiver extending radially from the tool body and configured to reduce propagation of eddy currents between the transmitter and the receiver when the tool body is in a wellbore and a processor configured to process the signals provided by the receiver to determine the property of the earth formation.
    • 在方面中,提供了一种用于确定地层的性质的井眼中的装置。 在一个实施例中,该装置可以包括工具主体,其包括被配置为在地层中诱发电磁波的发射器,被配置为提供响应于感应的电磁波的信号的接收器,发射器和接收器之间的导电部件从 所述工具主体并且被配置为当所述工具主体处于井筒中时,减少所述发射器和所述接收器之间的涡流的传播,并且所述处理器被配置为处理由所述接收器提供的信号以确定所述地层的性质。
    • 8. 发明授权
    • Axial resolution enhancement method for resistivity well logs which
accounts for lateral variations in the resistivity of earth formations
penetrated by a wellbore
    • 电磁测井的轴向分辨率增强方法,其考虑了井眼渗透的地层电阻率的横向变化
    • US6049209A
    • 2000-04-11
    • US78875
    • 1998-05-14
    • Jiaqi XiaoDavid R. BeardBill Harold CorleyIngo M. Geldmacher
    • Jiaqi XiaoDavid R. BeardBill Harold CorleyIngo M. Geldmacher
    • G01V3/26G01V3/10G01V3/18
    • G01V3/26
    • A method for enhancing the axial resolution of conductivity well log measurements of in earth formation zones radially distal from a wellbore. The method includes calculating differential axial resolution information present in measurements of the conductivity of a zone radially proximal to the wellbore by low pass filtering the proximal zone measurements so as to have the same axial resolution as the measurements of earth formations radially distal from the wellbore, and subtracting the low pass filtered measurements from the measurements of the proximal zone. The differential axial resolution information is projected to conductivity values which would obtain if the proximal zone conductivity were equal to the distal zone conductivity. The projection is calculated by determining a projection factor, which is related to a weighted average of a ratio of conductivity in the distal zone with respect to the conductivity in the proximal zone. The projected differential axial resolution information is then added to the conductivity measurements of the distal zone to obtain higher resolution measurements of conductivity in the radially distal zone.
    • 一种用于增强径向远离井眼的地层形成区域的导电率测井的轴向分辨率的方法。 该方法包括通过对近端区域测量进行低通滤波来计算径向靠近井眼的区域的导电性测量中存在的差分轴向分辨率信息,以便具有与径向远离井筒的地层测量结果相同的轴向分辨率, 并从近端区域的测量中减去低通滤波的测量值。 差分轴向分辨率信息被预测为如果近端区电导率等于远端区电导率将获得的电导率值。 通过确定投影因子来计算投影,其与远端区域中的电导率相对于近端区域中的电导率的加权平均值相关。 然后将投影的差分轴向分辨率信息添加到远端区域的电导率测量值,以获得在径向远端区域中的更高分辨率的电导率测量。
    • 9. 发明申请
    • ELECTRICAL IMAGER OPERATING IN OIL-BASED MUD AND LOW RESISTIVE FORMATION
    • 基于油基陶瓷和低电阻形成的电子成像仪
    • US20130013210A1
    • 2013-01-10
    • US13346263
    • 2012-01-09
    • Gregory B. ItskovichDavid R. BeardFei Le
    • Gregory B. ItskovichDavid R. BeardFei Le
    • G01V3/38
    • G01V3/20
    • This disclosure relates to apparatuses and methods for reducing current leakage between a measure electrode and a logging tool body during borehole investigations in an earth formation involving electric current and non-conductive drilling fluid. The apparatus may include one or more transmitters disposed on a pad body, configured to inject an electric current into the earth formation, and coupled to the mandrel and one or more measure electrodes. The measure electrodes may be configured to receive current from the formation and coupled to a back plate of the pad body. The apparatus may be configured to maintain a selected ratio between pad body to logging tool body impedance and transmitters to logging tool body impedance sufficient to reduce current leakage between the earth formation and the logging tool body. The transmitter/mandrel and measure electrode/back plate may be electrically isolated from one another. The method may include using the apparatus.
    • 本公开涉及用于在包括电流和非导电钻井液的地层中的井眼研究期间减小测量电极和测井工具主体之间的电流泄漏的装置和方法。 设备可以包括设置在垫体上的一个或多个发射器,其被配置为将电流注入到地层中,并且耦合到心轴和一个或多个测量电极。 测量电极可以被配置为从地层接收电流并且耦合到衬垫本体的背板。 该装置可以被配置为保持衬垫主体与测井工具主体阻抗之间的选定比率,并且将发射器保持在足以减小地球形成和测井工具主体之间的电流泄漏的工具体阻抗。 发射器/心轴和测量电极/背板可以彼此电隔离。 该方法可以包括使用该装置。