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    • 92. 发明申请
    • Apparatus and method for supporting structures on offshore platforms
    • 海上平台支撑结构的装置和方法
    • US20050199400A1
    • 2005-09-15
    • US10797875
    • 2004-03-10
    • James MoncusJoseph Miller
    • James MoncusJoseph Miller
    • E21B19/22E21B29/12
    • E21B19/22
    • An apparatus for supporting a structure on a platform. The platform may be a floating platform. The apparatus comprises a base frame, wherein the base frame has a first bracket and a second bracket attached thereto. The apparatus further includes a x-axis frame having a first pivot point and a second pivot point. The apparatus further comprises a z-axis frame having a third pivot point and a fourth pivot point. A sliding frame assembly is operatively positioned within the z-axis frame, and wherein the sliding frame assembly has a plurality of rods for connecting with an injector head. The apparatus may further include a motion restriction system that restricts movement of the x-axis frame and the z-axis frame. The sliding frame assembly comprises a sliding pad for lateral movement. A method for compensating for the movement of a floating platform having a riser extending therefrom is also disclosed.
    • 一种用于在平台上支撑结构的装置。 该平台可能是一个浮动平台。 该装置包括底架,其中底架具有第一支架和附接到其上的第二支架。 该装置还包括具有第一枢转点和第二枢转点的x轴框架。 该装置还包括具有第三枢轴点和第四枢转点的z轴框架。 滑动框架组件可操作地定位在z轴框架内,并且其中滑动框架组件具有用于与注射器头连接的多个杆。 该装置还可以包括限制x轴框架和z轴框架的运动的运动限制系统。 滑动框架组件包括用于横向运动的滑动垫。 还公开了一种用于补偿具有从其延伸的提升管的浮动平台的运动的方法。
    • 93. 发明申请
    • Activity data capture system for a well service vehicle
    • 井服务车辆的活动数据捕获系统
    • US20050103491A1
    • 2005-05-19
    • US10957309
    • 2004-10-01
    • Frederic NewmanPaul Herring
    • Frederic NewmanPaul Herring
    • E21B7/12E21B19/00E21B29/12E21B41/00E21B44/00E21B47/00E21B47/26G06F20060101G06Q10/06
    • E21B41/00
    • The present invention is directed to incrementing a well service rig in such a manner that activity-based and/or time-based data for the well site is recorded. The invention contemplates that the acquired data can be transmitted in near real-time or periodically via wired, wireless, satellite or physical transfer such as by memory module to a data center preferably controlled by the work-over rig owner, but alternately controlled by the well owner or another. The data can thereafter be used to provide the customer in various forms ranging from a detailed invoice to a searchable, secure web-based database. With such information, the customer can schedule other services at the well site. Further, the customer will have access to detailed data on the actual service performed and can. The present invention fosters a synergistic relationship among the customer and the service companies that promotes a safe environment by monitoring crew work activities and equipment speeds; improving productivity; reducing operation expenses through improved job processes; and better data management and reduced operational failures.
    • 本发明旨在以这样的方式增加井服务钻机,即记录井场的基于活动的和/或基于时间的数据。 本发明考虑到所获取的数据可以通过有线,无线,卫星或物理传送(例如由存储器模块)以实时或周期的方式传输到数据中心,该数据中心优选地由处理钻机所有者控制,但是交替地由 业主或其他人。 此后,可以使用数据为客户提供从详细发票到可搜索,安全的基于Web的数据库的各种形式。 有了这样的信息,客户可以在井场安排其他服务。 此外,客户可以访问执行的实际服务的详细数据。 本发明通过监测船员工作活动和设备速度,促进客户和服务公司之间的协同关系,促进安全环境; 提高生产力; 通过改进工作流程减少运营费用; 更好的数据管理和减少的操作失败。
    • 94. 发明授权
    • Intervention device for a subsea well, and method and cable for use with the device
    • 用于海底井的干预装置,以及与装置一起使用的方法和电缆
    • US06843321B2
    • 2005-01-18
    • US10204606
    • 2001-02-20
    • Hans-Paul Carlsen
    • Hans-Paul Carlsen
    • E21B19/00E21B19/22E21B33/076E21B29/12
    • E21B33/076E21B7/124E21B19/002E21B19/22
    • A device for intervention of a subsea oil and/or gas well by means of a tool (8) suspended by a cable (9), fed from or withdrawn to a vessel (1) and driven by a drive mechanism (12) located on the vessel. The device comprises a lubricator (5) having a tool housing for the insertion of the tool into the well, and a stuffing box (40) sealing around the cable after the tool is inserted into the well. According to the invention an injector which drives the cable in the well is located on the lubricator, and is controllable independently of the drive mechanism for the cable located on the vessel. The drive mechanism and the injector may be synchronized in a manner, among others, providing that the cable is hanging in a predetermined arc during the intervention, whereby the vessel may be moved from the well. Moreover, the invention relates to a method and a cable used together with the device.
    • 一种用于通过由电缆(9)悬挂的工具(8)来干涉海底油和/或气井的装置,从或从容器(1)进料或抽出到容器(1)并由驱动机构(12)驱动 船只。 该装置包括具有用于将工具插入井中的工具壳体的润滑器(5),以及在工具插入井中之后围绕电缆密封的填料箱(40)。 根据本发明,驱动井中的电缆的喷射器位于润滑器上,并且可独立于用于位于容器上的电缆的驱动机构而被控制。 驱动机构和喷射器可以以一种方式同步,其中包括在介入期间使电缆悬挂在预定的电弧中,由此容器可以从井中移动。 此外,本发明涉及与装置一起使用的方法和电缆。
    • 95. 发明授权
    • Simplified Xmas tree using sub-sea test tree
    • 使用海底测试树的简化圣诞树
    • US6109352A
    • 2000-08-29
    • US43780
    • 1998-07-30
    • Jeffrey Charles EdwardsMichael Graham Morgan
    • Jeffrey Charles EdwardsMichael Graham Morgan
    • E21B33/035E21B34/04E21B7/12E21B29/12
    • E21B33/0355E21B33/035E21B34/04
    • An improved sub-sea Xmas tree consists of a wellhead connector, a cylindrical structural housing and a tree cap mounted on top of the housing. A dual bore sub-sea completion test tree is disposed in the housing and it has a main production bore with serial ball valves for controlling fluid flow in the production flow path of an annuus bore with a ball valve therein. The ball valves are independently and remotely actuatable by a remotely operated vehicle (ROV) override system to control communication through the Xmas tree and to comply with various regulatory standards. A cross-over valve is provided between the main bore and the annulus bore to allow fluid passage for well kill operations.
    • PCT No.PCT / GB96 / 02322 Sec。 371日期:1998年7月30日 102(e)1998年7月30日PCT PCT 1996年9月20日PCT公布。 公开号WO97 / 11252 日期1997年3月27日改良的海底圣诞树由井口连接器,圆柱形结构外壳和安装在外壳顶部的树帽组成。 双孔海底完井测试树设置在壳体中,并且其具有主要生产孔,其具有串联球阀,用于控制在其中具有球阀的环形孔的生产流动路径中的流体流动。 球阀可以通过远程操作的车辆(ROV)超控系统独立地和远程地启动,以控制通过圣诞树的通信并遵守各种监管标准。 在主孔和环形孔之间设置有交叉阀,以允许流体通过以进行井杀死操作。
    • 97. 发明授权
    • Detonation assembly for explosive wellhead severing system
    • 爆炸井口切断系统爆轰装置
    • US4909320A
    • 1990-03-20
    • US258228
    • 1988-10-14
    • Joseph V. HebertRobert J. Schwartz
    • Joseph V. HebertRobert J. Schwartz
    • E21B31/16E21B29/02E21B29/12
    • E21B29/12E21B29/02
    • A detonation assembly for an explosive wellhead severing system which employs a battery pack lowerable through a drill string to engage and power the detonation assembly positioned within the well bore. The lowerable unit includes a biased shutter which seals the contacts from discharge of the battery pack by the surrounding fluids. The shuttered unit is lowered into contact with the receiving unit to arm the detonation assembly. Until the power unit is lowered into engagement, the severing system is not armed. In case of malfunction or misfire, the power unit can be retrieved to disarm the detonator assembly. The entire assembly is housed within the drill string to isolate the critical elements from the surrounding environment.
    • 一种用于爆炸性井口切断系统的爆炸组件,其采用可通过钻柱可降低的电池组,以接合和驱动位于井眼内的爆震组件。 可降低的单元包括偏置的快门,其将接触件密封,以防止周围流体对电池组的排出。 快门单元下降到与接收单元接触以支撑爆震组件。 在动力单元下降到接合之前,切断系统未装备。 在发生故障或失火的情况下,可以检索动力单元以撤离雷管组件。 整个组件安装在钻柱内,以将关键元件与周围环境隔离开来。
    • 100. 发明授权
    • Remotely actuated cutting assembly for broken underwater guidelines
    • 用于破坏水下准则的远程切割组件
    • US4746246A
    • 1988-05-24
    • US311261
    • 1981-10-14
    • William S. CowanDouglas D. Hall
    • William S. CowanDouglas D. Hall
    • B63B21/60E21B29/12E21B41/04E21B7/12
    • B63B21/60E21B29/12E21B41/04
    • An apparatus for remotely cutting a broken guideline extending from an underwater guide post comprising a frame, a clamping mechanism for clamping the frame to the guide post in a predetermined location, a pair of opposed cutting jaws pivotally coupled to the frame, and a remotely actuated power device for pivoting the jaws across the longitudinal axis of the broken guideline to sever the guideline from the guide post. The cutting jaws are pivoted about the same axis and are actuated by a U-shaped driver slidably movable along the frame. The clamping mechanism comprises a pair of opposed jaws receivable in an annular groove in the guide post. Above the cutting jaws are a pair of pivotal loom jaws which guide the assembly on the post and also deflect any interfering portion of the broken guideline extending along the side of the post.
    • 一种用于远程切割从包括框架的水下引导柱延伸的破损的引导件的装置,用于将框架紧固到引导柱的预定位置的夹紧机构,可枢转地联接到框架的一对相对的切割爪,以及远程致动 动力装置,用于使夹爪跨越破损的导向件的纵向轴线枢转,以将引导件从引导柱切断。 切割爪围绕相同的轴线枢转并且由可沿着框架可滑动地移动的U形驱动器致动。 夹紧机构包括一对相对的夹爪,其可接收在引导柱中的环形槽中。 切割爪的上方是一对枢转的织机颚,其将组件引导到柱上,并且还偏转沿着柱的侧面延伸的破损的引导件的任何干扰部分。