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    • 24. 发明申请
    • Managing Treatment of Subterranean Zones
    • 管理地下治理
    • US20120318511A1
    • 2012-12-20
    • US13161623
    • 2011-06-16
    • Jason D. DykstraMichael Linley Fripp
    • Jason D. DykstraMichael Linley Fripp
    • E21B36/00
    • E21B43/24
    • A downhole heated fluid generation system includes an air subsystem having at least one of an air compressor and an air flow control valve; a fuel subsystem having at least one of a fuel compressor and a fuel flow control valve; a treatment fluid subsystem having a fluid pump; a combustor fluidly coupled to at least one of the air subsystem, the fuel subsystem, or the treatment fluid subsystem, and operable to provide a heated fluid into a wellbore; and a controller operable to receive an input representing a heated fluid parameter; determine a virtual heated fluid generation rate based at least partially on the heated fluid parameter; and control at least one of the air subsystem, the fuel subsystem, or the treatment fluid subsystem by the virtual heated fluid generation rate.
    • 井下加热流体产生系统包括具有空气压缩机和空气流量控制阀中的至少一个的空气子系统; 具有燃料压缩机和燃料流量控制阀中的至少一个的燃料子系统; 具有流体泵的处理液体子系统; 流体耦合到空气子系统,燃料子系统或处理流体子系统中的至少一个的燃烧器,并且可操作以将加热的流体提供到井筒中; 以及控制器,其可操作以接收表示加热的流体参数的输入; 至少部分地基于加热的流体参数确定虚拟加热流体产生速率; 并且通过虚拟加热的流体产生速率来控制空气子系统,燃料子系统或处理流体子系统中的至少一个。
    • 25. 发明授权
    • Downhole actuator apparatus having a chemically activated trigger
    • 具有化学活化触发器的井下致动器装置
    • US08322426B2
    • 2012-12-04
    • US12768927
    • 2010-04-28
    • Adam WrightDonald Herbert PerkinsMichael Linley FrippScott Luke Miller
    • Adam WrightDonald Herbert PerkinsMichael Linley FrippScott Luke Miller
    • E21B34/06E21B23/04
    • E21B23/06E21B34/063
    • A downhole actuator apparatus that selectively maintains a pressure differential between two pressure regions in a well. The apparatus includes a body defining first and second chambers. A piston is slidably disposed in the body and is selectively moveable between first and second positions. A barrier is disposed in the body to selectively separate the first and second chambers. A fluid is disposed in the first chamber between the barrier and the piston. A control system that is at least partially disposed within the body is operable to generate an output signal responsive to receipt of a predetermined input signal. The output signal is operable to create a failure of the barrier such that at least a portion of the fluid flows from the first chamber to the second chamber and the piston moves from the first position to the second position.
    • 一种井下致动器装置,其选择性地保持井中的两个压力区域之间的压力差。 该装置包括限定第一和第二室的主体。 活塞可滑动地设置在主体中并且可选地在第一和第二位置之间移动。 屏障设置在主体中以选择性地分离第一和第二腔室。 流体在第一室中设置在阻挡件和活塞之间。 至少部分地设置在身体内的控制系统可操作以响应于接收到预定输入信号而产生输出信号。 输出信号可操作以产生阻挡层的故障,使得至少一部分流体从第一腔室流到第二腔室,并且活塞从第一位置移动到第二位置。
    • 27. 发明申请
    • METHOD AND APPARATUS FOR AUTONOMOUS DOWNHOLE FLUID SELECTION WITH PATHWAY DEPENDENT RESISTANCE SYSTEM
    • 自适应流体选择路基依赖电阻系统的方法与装置
    • US20110308806A9
    • 2011-12-22
    • US12700685
    • 2010-02-04
    • Jason D. DykstraMichael Linley FrippOrlando DeJesusJohn C. GanoLuke Holderman
    • Jason D. DykstraMichael Linley FrippOrlando DeJesusJohn C. GanoLuke Holderman
    • E21B34/06F16L55/027E21B43/08
    • E21B34/08E21B34/06E21B43/08E21B43/12E21B43/14E21B43/32F15C1/16Y10T137/2065Y10T137/2076Y10T137/2087Y10T137/212
    • An apparatus is described for controlling flow of fluid in a tubular positioned in a wellbore extending through a subterranean formation. A flow control system is placed in fluid communication with a main tubular. The flow control system has a flow ratio control system and a pathway dependent resistance system. The flow ratio control system has a first and second passageway, the production fluid flowing into the passageways with the ratio of fluid flow through the passageways related to the characteristic of the fluid flow. The pathway dependent resistance system includes a vortex chamber with a first and second inlet and an outlet, the first inlet of the pathway dependent resistance system in fluid communication with the first passageway of the fluid ratio control system and the second inlet in fluid communication with the second passageway of the fluid ratio control system. The first inlet is positioned to direct fluid into the vortex chamber such that it flows primarily tangentially into the vortex chamber, and the second inlet is positioned to direct fluid such that it flows primarily radially into the vortex chamber. Undesired fluids, such as natural gas or water, in an oil well, are directed, based on their relative characteristic, into the vortex primarily tangentially, thereby restricting fluid flow when the undesired fluid is present as a component of the production fluid.
    • 描述了一种用于控制位于穿过地下地层的井筒中的管中的流体流动的装置。 流量控制系统被放置成与主管道流体连通。 流量控制系统具有流量比控制系统和通路依赖电阻系统。 流量比控制系统具有第一和第二通道,生产流体流入通道,​​流体通过通道的流体与流体流动的特性相关。 所述依赖于路径的电阻系统包括具有第一和第二入口和出口的涡流室,所述通路依赖电阻系统的第一入口与流体比例控制系统的第一通道流体连通,并且与第二入口流体连通 流量比控制系统的第二通道。 第一入口被定位成将流体引导到涡流室中,使得其主要沿切向流动到涡流室中,并且第二入口被定位成引导流体,使得其主要径向流动到涡流室中。 油井中的不期望的流体(例如天然气或水)基于它们的相对特征被导向主要是切向的涡流,从而当不期望的流体作为生产流体的组分存在时限制流体流动。
    • 29. 发明授权
    • Apparatus for autonomous downhole fluid selection with pathway dependent resistance system
    • 具有路径依赖电阻系统的自主井下流体选择装置
    • US09109423B2
    • 2015-08-18
    • US12700685
    • 2010-02-04
    • Jason D. DykstraMichael Linley FrippOrlando DeJesusJohn C. GanoLuke Holderman
    • Jason D. DykstraMichael Linley FrippOrlando DeJesusJohn C. GanoLuke Holderman
    • E21B34/08F15C1/16E21B43/08E21B43/12E21B43/14E21B43/32
    • E21B34/08E21B34/06E21B43/08E21B43/12E21B43/14E21B43/32F15C1/16Y10T137/2065Y10T137/2076Y10T137/2087Y10T137/212
    • An apparatus is described for controlling flow of fluid in a tubular positioned in a wellbore extending through a subterranean formation. A flow control system is placed in fluid communication with a main tubular. The flow control system has a flow ratio control system and a pathway dependent resistance system. The flow ratio control system has a first and second passageway, the production fluid flowing into the passageways with the ratio of fluid flow through the passageways related to the characteristic of the fluid flow. The pathway dependent resistance system includes a vortex chamber with a first and second inlet and an outlet, the first inlet of the pathway dependent resistance system in fluid communication with the first passageway of the fluid ratio control system and the second inlet in fluid communication with the second passageway of the fluid ratio control system. The first inlet is positioned to direct fluid into the vortex chamber such that it flows primarily tangentially into the vortex chamber, and the second inlet is positioned to direct fluid such that it flows primarily radially into the vortex chamber. Undesired fluids, such as natural gas or water, in an oil well, are directed, based on their relative characteristic, into the vortex primarily tangentially, thereby restricting fluid flow when the undesired fluid is present as a component of the production fluid.
    • 描述了一种用于控制位于穿过地下地层的井筒中的管中的流体流动的装置。 流量控制系统被放置成与主管道流体连通。 流量控制系统具有流量比控制系统和通路依赖电阻系统。 流量比控制系统具有第一和第二通道,生产流体流入通道,​​流体通过通道的流体与流体流动的特性相关。 所述依赖于路径的电阻系统包括具有第一和第二入口和出口的涡流室,所述通路依赖电阻系统的第一入口与流体比例控制系统的第一通道流体连通,并且与第二入口流体连通 流量比控制系统的第二通道。 第一入口被定位成将流体引导到涡流室中,使得其主要沿切向流动到涡流室中,并且第二入口被定位成引导流体,使得其主要径向流动到涡流室中。 油井中的不期望的流体(例如天然气或水)基于它们的相对特征被导向主要是切向的涡流,从而当不期望的流体作为生产流体的组分存在时限制流体流动。