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    • 2. 发明申请
    • METHODS OF MAINTAINING SUFFICIENT HYDROSTATIC PRESSURE IN MULTIPLE INTERVALS OF A WELLBORE IN A SOFT FORMATION
    • 在软岩形成中的井眼多维间隔中维持有效的压降压力的方法
    • US20120199362A1
    • 2012-08-09
    • US13020618
    • 2011-02-03
    • Tommy Frank GRIGSBYBruce TECHENTIEN
    • Tommy Frank GRIGSBYBruce TECHENTIEN
    • E21B43/00
    • E21B21/08E21B21/12E21B43/10E21B43/14
    • According to an embodiment, a method of maintaining a hydrostatic pressure exerted on a wall of a wellbore in at least a first interval and a second interval of the wellbore, comprises the steps of: flowing a liquid through at least a first pressure regulator and a second pressure regulator, wherein the first pressure regulator is located in the first interval of the wellbore, wherein the second pressure regulator is located in the second interval of the wellbore, and wherein each of the first and second pressure regulators regulates the amount of pressure exerted by the liquid on the wall of the wellbore; and maintaining the amount of pressure for a specific period of time. According to another embodiment, a method of maintaining a hydrostatic pressure in multiple intervals of a soft subterranean formation, comprises the steps of: using a pressure regulator to maintain an amount of pressure exerted by a liquid on the face of the subterranean formation in each of the multiple intervals, wherein the step of using comprises maintaining liquid communication with each of the multiple intervals. According to certain embodiments, the wellbore is part of a soft subterranean formation.
    • 根据一个实施例,在井眼的至少第一间隔和第二间隔内保持施加在井眼的壁上的静水压力的方法包括以下步骤:使液体流过至少第一压力调节器和 第二压力调节器,其中所述第一压力调节器位于所述井筒的所述第一间隔中,其中所述第二压力调节器位于所述井眼的所述第二间隔中,并且其中所述第一和第二压力调节器中的每一个调节施加的压力量 通过井筒壁上的液体; 并保持一段时间的压力。 根据另一个实施例,一种在软地层的多个间隔内保持静水压力的方法包括以下步骤:使用压力调节器来保持由液体施加在地下地层表面上的压力的量 所述多个间隔,其中所述使用步骤包括维持与所述多个间隔中的每一个的液体连通。 根据某些实施例,井眼是软地层的一部分。
    • 3. 发明授权
    • Downhole fiber optic wet connect and gravel pack completion
    • 井下光纤湿连接和砾石充填完成
    • US07165892B2
    • 2007-01-23
    • US10680625
    • 2003-10-07
    • Tommy GrigsbyBruce TechentienDavid HendersonBryon Mullen
    • Tommy GrigsbyBruce TechentienDavid HendersonBryon Mullen
    • G02B6/36
    • E21B17/028G02B6/389
    • A downhole fiber optic wet connect and gravel pack completion. In a described embodiment, a system for making fiber optic connections in a subterranean well includes a first fiber optic connector positioned in the well and a second fiber optic connector operatively connected to the first fiber optic connector after the first fiber optic connector is positioned in the well. A method of monitoring a subterranean well includes the steps of: positioning a fiber optic line in the well, the fiber optic line extending in a formation intersected by the well; positioning another fiber optic line in the well, the fiber optic line extending to a remote location; operatively connecting the fiber optic lines while the fiber optic lines are in the well; and monitoring a well parameter using a sensor operatively coupled to the fiber optic line extending in the formation.
    • 井下光纤湿连接和砾石充填完成。 在所描述的实施例中,用于在地下井中制造光纤连接的系统包括位于井中的第一光纤连接器和在第一光纤连接器位于第一光纤连接器之后可操作地连接到第一光纤连接器的第二光纤连接器 好。 监测地下井的方法包括以下步骤:将光纤线定位在井中,光纤线在与井相交的地层中延伸; 将另一个光纤线路定位在井中,光纤线路延伸到远程位置; 在光纤线路处于井中时可操作地连接光纤线路; 以及使用可操作地耦合到在地层中延伸的光纤线路的传感器监测井参数。
    • 4. 发明授权
    • Open hole completion apparatus and method for use of same
    • 露天完井装置及其使用方法
    • US08267173B2
    • 2012-09-18
    • US12469134
    • 2009-05-20
    • Brad A. ClarksonRonnie BurgerBruce Techentien
    • Brad A. ClarksonRonnie BurgerBruce Techentien
    • E21B43/04E21B33/00E21B43/26E21B43/00
    • E21B43/04E21B43/267
    • An open hole completion apparatus (80) includes an outer tubing string (56) disposed in an open hole portion of a wellbore (32). The outer tubing string (56) includes a sand control screen (102) and a shrouded closing sleeve (91). An inner tubing string (84) is at least partially disposed within the outer tubing string (56). The inner tubing string (84) includes a crossover assembly (114). The shrouded closing sleeve (91) has a shroud (92) that creates a channel (98) with a portion of the outer tubing string (56) by extending over a fluid port (94) of the shrouded closing sleeve (91) toward the sand control screen (102), such that when a treatment fluid is pumped through the inner tubing string (84), the crossover assembly (114) and the fluid port (94), the treatment fluid is injected into the wellbore (32) remote from the fluid port (94).
    • 开孔完成装置(80)包括设置在井筒(32)的开孔部分中的外管柱(56)。 外管柱(56)包括防砂筛(102)和带盖的封闭套(91)。 内管柱(84)至少部分地设置在外管柱(56)内。 内管柱(84)包括交叉组件(114)。 所述带盖的封闭套筒(91)具有护罩(92),所述护罩(92)通过在所述封闭套筒(91)的流体端口(94)上延伸以朝向所述封套(91)的流体端口(94)产生具有所述外管道管线(56)的一部分的通道(98) 防砂控制筛(102),使得当处理流体被泵送通过内管柱(84),交叉组件(114)和流体端口(94)时,将处理流体注入到井眼(32)远程 从流体端口(94)。
    • 5. 发明申请
    • Downhole Fiber Optic Wet Connect and Gravel Pack Completion
    • 井下光纤湿连接和砾石充填完成
    • US20070081768A1
    • 2007-04-12
    • US11560724
    • 2006-11-16
    • Tommy GrigsbyBruce TechentienDavid HendersonBryon Mullen
    • Tommy GrigsbyBruce TechentienDavid HendersonBryon Mullen
    • G02B6/36
    • E21B17/028G02B6/389
    • A downhole fiber optic wet connect and gravel pack completion. In a described embodiment, a system for making fiber optic connections in a subterranean well includes a first fiber optic connector positioned in the well and a second fiber optic connector operatively connected to the first fiber optic connector after the first fiber optic connector is positioned in the well. A method of monitoring a subterranean well includes the steps of: positioning a fiber optic lo line in the well, the fiber optic line extending in a formation intersected by the well; positioning another fiber optic line in the well, the fiber optic line extending to a remote location; operatively connecting the fiber optic lines while the fiber optic lines are in the well; and monitoring a well parameter using a sensor operatively coupled to the fiber optic line extending in the formation.
    • 井下光纤湿连接和砾石充填完成。 在所描述的实施例中,用于在地下井中制造光纤连接的系统包括位于井中的第一光纤连接器和在第一光纤连接器位于第一光纤连接器之后可操作地连接到第一光纤连接器的第二光纤连接器 好。 监测地下井的方法包括以下步骤:将光纤线路定位在井中,光纤线路延伸在与井相交的地层中; 将另一个光纤线路定位在井中,光纤线路延伸到远程位置; 在光纤线路处于井中时可操作地连接光纤线路; 以及使用可操作地耦合到在地层中延伸的光纤线路的传感器监测井参数。
    • 9. 发明申请
    • Open Hole Completion Apparatus and Method for Use of Same
    • 开孔完井装置及其使用方法
    • US20100294495A1
    • 2010-11-25
    • US12469134
    • 2009-05-20
    • Brad A. ClarksonRonnie BurgerBruce Techentien
    • Brad A. ClarksonRonnie BurgerBruce Techentien
    • E21B43/00E21B43/08E21B33/12E21B34/06E21B23/00E21B43/26E21B43/04E21B43/10
    • E21B43/04E21B43/267
    • An open hole completion apparatus (80) includes an outer tubing string (56) disposed in an open hole portion of a wellbore (32). The outer tubing string (56) includes a sand control screen (102) and a shrouded closing sleeve (91). An inner tubing string (84) is at least partially disposed within the outer tubing string (56). The inner tubing string (84) includes a crossover assembly (114). The shrouded closing sleeve (91) has a shroud (92) that creates a channel (98) with a portion of the outer tubing string (56) by extending over a fluid port (94) of the shrouded closing sleeve (91) toward the sand control screen (102), such that when a treatment fluid is pumped through the inner tubing string (84), the crossover assembly (114) and the fluid port (94), the treatment fluid is injected into the wellbore (32) remote from the fluid port (94).
    • 开孔完成装置(80)包括设置在井筒(32)的开孔部分中的外管柱(56)。 外管柱(56)包括防砂筛(102)和带盖的封闭套(91)。 内管柱(84)至少部分地设置在外管柱(56)内。 内管柱(84)包括交叉组件(114)。 所述带盖的封闭套筒(91)具有护罩(92),所述护罩(92)通过在所述封闭套筒(91)的流体端口(94)上延伸以朝向所述封套(91)的流体端口(94)产生具有所述外管道管线(56)的一部分的通道(98) 防砂控制筛(102),使得当处理流体被泵送通过内管柱(84),交叉组件(114)和流体端口(94)时,将处理流体注入到井眼(32)远程 从流体端口(94)。
    • 10. 发明授权
    • Downhole fiber optic wet connect and gravel pack completion
    • 井下光纤湿连接和砾石充填完成
    • US07556093B2
    • 2009-07-07
    • US11560724
    • 2006-11-16
    • Tommy GrigsbyBruce TechentienDavid HendersonBryon Mullen
    • Tommy GrigsbyBruce TechentienDavid HendersonBryon Mullen
    • E21B17/02
    • E21B17/028G02B6/389
    • A downhole fiber optic wet connect and gravel pack completion. In a described embodiment, a system for making fiber optic connections in a subterranean well includes a first fiber optic connector positioned in the well and a second fiber optic connector operatively connected to the first fiber optic connector after the first fiber optic connector is positioned in the well. A method of monitoring a subterranean well includes the steps of: positioning a fiber optic line in the well, the fiber optic line extending in a formation intersected by the well; positioning another fiber optic line in the well, the fiber optic line extending to a remote location; operatively connecting the fiber optic lines while the fiber optic lines are in the well; and monitoring a well parameter using a sensor operatively coupled to the fiber optic line extending in the formation.
    • 井下光纤湿连接和砾石充填完成。 在所描述的实施例中,用于在地下井中制造光纤连接的系统包括位于井中的第一光纤连接器和在第一光纤连接器位于第一光纤连接器之后可操作地连接到第一光纤连接器的第二光纤连接器 好。 监测地下井的方法包括以下步骤:将光纤线定位在井中,光纤线在与井相交的地层中延伸; 将另一个光纤线路定位在井中,光纤线路延伸到远程位置; 在光纤线路处于井中时可操作地连接光纤线路; 以及使用可操作地耦合到在地层中延伸的光纤线路的传感器监测井参数。