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    • 4. 发明申请
    • IN-FLOW CONTROL DEVICE UTILIZING A WATER SENSITIVE MEDIA
    • 使用水敏感介质的流体控制装置
    • WO2010019737A2
    • 2010-02-18
    • PCT/US2009/053647
    • 2009-08-13
    • BAKER HUGHES INCORPORATEDHAMMER, Aaron, C.HUANG, Tianping, TimCREWS, James, B.CORONADO, Martin, P.
    • HAMMER, Aaron, C.HUANG, Tianping, TimCREWS, James, B.CORONADO, Martin, P.
    • E21B43/12
    • E21B34/08
    • An apparatus for controlling fluid flow into a tubular includes an in-flow control device having a plurality of flow paths; and a reactive media disposed in each of the flow paths. The reactive media may change permeability by interacting with a selected fluid such as water. Two or more of the flow paths may be hydraulically parallel. The reactive media may include a Relative Permeability Modifier. An associated method may include conveying the fluid via a plurality of flow paths; and controlling a resistance to flow in plurality of flow paths using a reactive media disposed in each of the flow paths. An associated system may include a wellbore tubular; an in-flow control device; a hydraulic circuit formed in the in-flow control device; and a reactive media disposed in the hydraulic circuit, the reactive media may change permeability by interacting with a selected fluid.
    • 用于控制流入管中的流体的装置包括具有多个流动路径的流入控制装置; 以及布置在每个流动路径中的反应介质。 反应介质可以通过与选定的流体例如水相互作用来改变渗透性。 两个或多个流路可以是液压平行的。 反应介质可以包括相对渗透性改性剂。 相关联的方法可以包括经由多个流动路径输送流体; 以及使用布置在每个流动路径中的反应介质来控制在多个流动路径中的流动阻力。 相关联的系统可以包括井筒管; 流量控制装置; 形成在流入控制装置中的液压回路; 以及布置在液压回路中的反应介质,反应介质可以通过与所选择的流体相互作用来改变渗透性。
    • 6. 发明申请
    • SLURRY OUTLET IN A GRAVEL PACKING ASSEMBLY
    • 灰浆包装中的浆料出口
    • WO2011137074A1
    • 2011-11-03
    • PCT/US2011/033794
    • 2011-04-25
    • BAKER HUGHES INCORPORATEDHAMMER, Aaron, C.
    • HAMMER, Aaron, C.
    • E21B43/04
    • E21B43/04E21B17/1085E21B41/0078
    • An outlet member is preferably made from a hardened material and is cut from a tubular shape at an angle of preferably 5 degrees. At its upper end it is cut away so that slurry flow can exit ports in a hardened sleeve and impinge directly onto the upstream portion of the insert. The impingement changes the flow stream angle as the flow continues through a fully tubular middle segment of the insert that leads out to an elongated exit ramp whose downstream end sits preferably flush with the outer housing wall so as to protect the insert from mechanical shocks and retain the insert axially when slurry flows through it. Other external details aid in fixation when in use.
    • 出口构件优选由硬化材料制成,并且以优选为5度的角度从管状切割。 在其上端被切除,使得浆料流可以在硬化的套筒中离开端口并直接撞击插入件的上游部分。 当流动继续穿过插入件的完全管状中间段时,冲击将改变流动流角度,该中间段引出到细长的出口斜坡,其下游端优选地与外部壳体壁齐平,以保护插入件免受机械冲击并保持 当浆料流过其时轴向插入。 其他外部细节在使用时有助于固定。
    • 10. 发明申请
    • IN-FLOW CONTROL DEVICE UTILIZING A WATER SENSITIVE MEDIA
    • 利用水敏感介质的流入控制装置
    • WO2010019737A3
    • 2010-05-20
    • PCT/US2009053647
    • 2009-08-13
    • BAKER HUGHES INCHAMMER AARON CHUANG TIANPING TIMCREWS JAMES BCORONADO MARTIN P
    • HAMMER AARON CHUANG TIANPING TIMCREWS JAMES BCORONADO MARTIN P
    • E21B43/12
    • E21B34/08
    • An apparatus for controlling fluid flow into a tubular includes an in-flow control device having a plurality of flow paths; and a reactive media disposed in each of the flow paths. The reactive media may change permeability by interacting with a selected fluid such as water. Two or more of the flow paths may be hydraulically parallel. The reactive media may include a Relative Permeability Modifier. An associated method may include conveying the fluid via a plurality of flow paths; and controlling a resistance to flow in plurality of flow paths using a reactive media disposed in each of the flow paths. An associated system may include a wellbore tubular; an in-flow control device; a hydraulic circuit formed in the in-flow control device; and a reactive media disposed in the hydraulic circuit, the reactive media may change permeability by interacting with a selected fluid.
    • 一种用于控制进入管道的流体流动的设备包括:具有多个流动路径的流入控制装置; 以及布置在每个流动路径中的反应介质。 反应性介质可以通过与选定的流体例如水相互作用来改变渗透性。 两个或更多个流动路径可以是液压平行的。 反应介质可以包括相对渗透性调节剂。 相关联的方法可以包括经由多个流动路径输送流体; 以及使用布置在每个流动路径中的反应介质来控制在多个流动路径中流动的阻力。 相关系统可以包括井筒管; 流入控制装置; 在流入控制装置中形成的液压回路; 以及布置在液压回路中的反应介质,反应介质可以通过与选择的流体相互作用而改变渗透性。