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    • 2. 发明授权
    • Pipe cutting apparatuses and related methods
    • 管切割设备及相关方法
    • US09388658B2
    • 2016-07-12
    • US14527729
    • 2014-10-29
    • TRANSOCEAN INNOVATION LABS, LTD
    • Guy Robert BabbittJohn Matthew Dalton
    • E21B33/064E21B29/12E21B7/18
    • E21B33/064E21B7/185E21B29/08E21B29/12
    • Some embodiments of the present subsea pipe cutting apparatuses use or include a frame, one or more water jet nozzles coupled to the frame and configured to apply pressurized fluid to a pipe to cut the pipe, and one or more of: a flange configured to secure the subsea pipe cutting apparatus relative to a blowout preventer stack, one or more water jet nozzles coupled to a rotating portion of the frame and configured to rotate about the pipe, one or more water jet nozzles movable between a retracted state and a deployed state in which the one or more water jet nozzles are radially closer to the pipe than when in the retracted state, one or more water jet nozzles pivotally coupled to the frame and configured to pivot while applying pressurized fluid to a surface of the pipe, and two or more water jet nozzles.
    • 本海底管切割设备的一些实施例使用或包括框架,一个或多个水喷嘴,其联接到框架并且构造成将加压流体施加到管道以切割管道,以及一个或多个:凸缘,其被配置为固定 海底管道切割装置相对于防喷器堆叠,一个或多个水喷嘴,其联接到框架的旋转部分并且被配置为围绕管旋转;一个或多个喷水喷嘴,其可在缩回状态和展开状态之间移动 一个或多个水喷嘴比处于缩回状态时更靠近管道的一个或多个水喷嘴,一个或多个水喷嘴可枢转地联接到框架并且构造成枢转,同时将加压流体施加到管的表面,以及两个或更多个水喷嘴 更多的喷水嘴。
    • 3. 发明申请
    • BOP CONTROL SYSTEMS AND RELATED METHODS
    • BOP控制系统及相关方法
    • US20160237773A1
    • 2016-08-18
    • US15043977
    • 2016-02-15
    • TRANSOCEAN INNOVATION LABS LTD
    • John Matthew DaltonLuis Pereira
    • E21B33/064G05B23/02G05B13/04
    • G05B23/0283E21B34/16G05B9/03
    • Some embodiments of the present BOP control systems include a system controller configured to actuate a first BOP function by communicating one or more commands to one or more nodes of a functional pathway selected from one or more available functional pathways associated with the first BOP function, each node comprising an actuatable component configured to actuate in response to a command received from the system controller, each node having one or more sensors configured to capture a first data set corresponding to actuation of the component and a processor configured to analyze the first data set to determine a useful life remaining of the component and/or compare the first data set to a second data set corresponding to a simulation of actuation of the component.
    • 本BOP控制系统的一些实施例包括系统控制器,其被配置为通过将一个或多个命令传递到选自与第一BOP功能相关联的一个或多个可用功能路径的功能路径的一个或多个节点来致动第一BOP功能, 节点包括被配置为响应于从系统控制器接收到的命令而致动的可致动部件,每个节点具有一个或多个传感器,其被配置为捕获对应于所述部件的致动的第一数据集,以及被配置为将所述第一数据集分析为 确定组件的剩余使用寿命和/或将第一数据组与对应于组件致动的模拟的第二数据集进行比较。
    • 6. 发明申请
    • SUBSEA PIPE CUTTING APPARATUSES AND RELATED METHODS
    • SUBSEA管切割装置及相关方法
    • US20150122501A1
    • 2015-05-07
    • US14527729
    • 2014-10-29
    • TRANSOCEAN INNOVATION LABS, LTD
    • Guy Robert BabbittJohn Matthew Dalton
    • E21B33/064E21B29/12
    • E21B33/064E21B7/185E21B29/08E21B29/12
    • Some embodiments of the present subsea pipe cutting apparatuses use or include a frame, one or more water jet nozzles coupled to the frame and configured to apply pressurized fluid to a pipe to cut the pipe, and one or more of: a flange configured to secure the subsea pipe cutting apparatus relative to a blowout preventer stack, one or more water jet nozzles coupled to a rotating portion of the frame and configured to rotate about the pipe, one or more water jet nozzles movable between a retracted state and a deployed state in which the one or more water jet nozzles are radially closer to the pipe than when in the retracted state, one or more water jet nozzles pivotally coupled to the frame and configured to pivot while applying pressurized fluid to a surface of the pipe, and two or more water jet nozzles.
    • 本海底管切割设备的一些实施例使用或包括框架,一个或多个水喷嘴,其联接到框架并且构造成将加压流体施加到管道以切割管道,以及一个或多个:凸缘,其被配置为固定 海底管道切割装置相对于防喷器堆叠,一个或多个水喷嘴,其联接到框架的旋转部分并且被配置为围绕管旋转;一个或多个喷水喷嘴,其可在缩回状态和展开状态之间移动 一个或多个水喷嘴比处于缩回状态时更靠近管道的一个或多个水喷嘴,一个或多个水喷嘴可枢转地联接到框架并且构造成枢转,同时将加压流体施加到管的表面,以及两个或更多个水喷嘴 更多的喷水嘴。