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    • 42. 发明授权
    • Active bottomhole pressure control with liner drilling and completion systems
    • 主动井底压力控制,带衬套钻孔和完井系统
    • US08011450B2
    • 2011-09-06
    • US11491245
    • 2006-07-21
    • Sven KruegerGerald HeisigDetlef HahnVolker KruegerPeter AronstamHarald GrimmerRoger FincherLarry Watkins
    • Sven KruegerGerald HeisigDetlef HahnVolker KruegerPeter AronstamHarald GrimmerRoger FincherLarry Watkins
    • E21B7/00
    • E21B21/08
    • One exemplary APD Device is used with a liner drilling assembly to control wellbore pressure. The APD Device reduces a dynamic pressure loss associated with the drilling fluid returning via a wellbore annulus. Another exemplary APD Device is used to control pressure in a wellbore when deploying wellbore equipment, including running, installing and/or operating wellbore tools. The APD Device is set to reduce a dynamic pressure loss associated with a circulating fluid. The APD Device can also be configured to reduce a surge effect associated with the running of the wellbore equipment. Still another APD Device is used to control pressure in a wellbore when completing or working over a well. Exemplary completion activity can include circulating fluid other than a drilling fluid, such as a gravel slurry. The APD Device can reduce the dynamic pressure loss associated with circulation of both drilling fluid and non-drilling fluid.
    • 一个示例性的APD装置与衬管钻井组件一起使用以控制井筒压力。 APD装置减少与通过井筒环返回的钻井液相关联的动态压力损失。 另一个典型的APD装置用于在部署井筒设备时,包括运行,安装和/或运行井眼工具,来控制井眼中的压力。 设置APD装置以减少与循环流体相关联的动态压力损失。 APD装置还可以被配置为减少与井筒设备的运行相关联的浪涌效应。 另一个APD装置用于在完成或在井上工作时控制井眼中的压力。 示例性的完成活动可以包括除了钻井流体之外的循环流体,例如砾石浆料。 APD装置可以减少与钻井液和非钻井液两者的循环相关的动态压力损失。
    • 43. 发明授权
    • Active controlled bottomhole pressure system and method with continuous circulation system
    • 主动控制井底压力系统及连续循环系统的方法
    • US07806203B2
    • 2010-10-05
    • US11455041
    • 2006-06-16
    • Sven KruegerVolker KruegerPeter AronstamHarald GrimmerRoger W. FincherLarry A. Watkins
    • Sven KruegerVolker KruegerPeter AronstamHarald GrimmerRoger W. FincherLarry A. Watkins
    • E21B7/00
    • E21B21/08
    • An APD Device provides a pressure differential in a wellbore to control dynamic pressure loss while drilling fluid is continuously circulated in the wellbore. A continuous circulation system circulates fluid both during drilling of the wellbore and when the drilling is stopped. Operating the APD Device allows wellbore pressure control during continuous circulation without substantially changing density of the fluid. The APD Device can maintain wellbore pressure below the combined pressure caused by weight of the fluid and pressure losses created due to circulation of the fluid in the wellbore, maintain the wellbore at or near a balanced pressure condition, maintain the wellbore at an underbalanced condition, reduce the swab effect in the wellbore, and/or reduce the surge effect in the wellbore. A flow restriction device that creates a backpressure in the wellbore annulus provides surface control of wellbore pressure.
    • APD装置在井眼中提供压差以控制动态压力损失,同时钻井液体在井筒中连续循环。 连续循环系统在钻井期间和钻井停止时循环流体。 操作APD装置允许在连续循环期间进行井筒压力控制,而基本上不改变流体的密度。 APD装置可以将井眼压力保持在由于流体重量和由于井眼中的流体循环而产生的压力损失所引起的组合压力之下,保持井筒处于或接近平衡的压力状态,保持井身处于欠平衡状态, 降低井眼中的拭子效应,和/或降低井眼中的浪涌效应。 在井筒环中产生背压的流量限制装置提供井筒压力的表面控制。
    • 44. 发明申请
    • SYSTEM AND METHOD FOR EVALUATION OF STRUCTURE-BORN SOUND
    • 用于评估结构声波的系统和方法
    • US20100038135A1
    • 2010-02-18
    • US12540459
    • 2009-08-13
    • Olof HummesSven KruegerDustin Garvey
    • Olof HummesSven KruegerDustin Garvey
    • E21B47/00E21B49/00E21B44/00G01V1/40
    • E21B49/003G01V1/46
    • A system for evaluation of conditions in a borehole in an earth formation includes: a downhole tool configured to be disposed in the borehole, the downhole tool forming a portion of a drillstring; at least one sensor associated with the downhole tool for recording sound generated in the borehole by the downhole tool and generating data representative of the recorded sound, the recorded sound having a frequency selected from at least one of an audible frequency, a near audible frequency and an ultrasonic frequency; and a processor in operable communication with the at least one sensor, the processor configured to receive the sound data and identify at least one downhole condition selected from at least one of i) a drilling condition, ii) a characteristic of the earth formation and iii) an integrity of the downhole tool, by comparing the recorded sound data to exemplary data patterns.
    • 用于评估地层钻孔中的状况的系统包括:井下工具,其构造成设置在钻孔中,所述井下工具形成钻柱的一部分; 与所述井下工具相关联的至少一个传感器,用于记录由所述井下工具在井眼中产生的声音并产生表示所述记录声音的数据,所述记录声音具有选自下列中的至少一个的频率:听觉频率,接近可听频率和 超声频率 以及处理器,其与所述至少一个传感器可操作地通信,所述处理器被配置为接收所述声音数据并且识别从以下至少一个中选择的至少一个井下状况:i)钻井条件,ii)地层的特征和iii )井下工具的完整性,通过将记录的声音数据与示例性数据模式相比较。
    • 49. 发明授权
    • Formation testing apparatus and method for optimizing draw down
    • 地层试验装置及优化方法
    • US07011155B2
    • 2006-03-14
    • US10423420
    • 2003-04-25
    • Matthias MeisterJaedong LeeSven KruegerEick Niemeyer
    • Matthias MeisterJaedong LeeSven KruegerEick Niemeyer
    • E21B49/00E21B47/10
    • E21B49/008E21B49/08E21B49/087
    • A method and apparatus for of determining a formation parameter of interest. The method includes placing a tool into communication with the formation to test the formation, determining a first formation characteristic during a first test portion, initiating a second test portion, the second test portion having test parameters determined at least in part by the determinations made during the first test portion, determining a second formation characteristic during the second test portion, and determining the formation parameter from one of the first formation characteristic and the second formation characteristic. The apparatus includes a draw down unit and a control system for closed loop control of the draw down unit. A microprocessor in the control system processes signals from a sensor in the draw down unit to determine formation characteristics and to determine test parameters for subsequent test portions.
    • 一种用于确定感兴趣的地层参数的方法和装置。 该方法包括将工具与地层连通以测试地层,确定第一测试部分期间的第一地层特征,启动第二测试部分,第二测试部分具有至少部分地通过在 第一测试部分,确定第二测试部分期间的第二形成特征,以及根据第一形成特征和第二形成特征中的一个确定形成参数。 该设备包括一个牵引单元和一个用于闭合控制牵引单元的控制系统。 控制系统中的微处理器处理来自牵引单元中的传感器的信号以确定形成特征并确定后续测试部分的测试参数。