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    • 1. 发明申请
    • ROTATABLE ELEMENT WIRE SECUREMENT
    • WO2019239115A1
    • 2019-12-19
    • PCT/GB2019/051610
    • 2019-06-10
    • GE OIL & GAS UK LIMITED
    • CLEMENTS, Richard
    • F16L33/01F16B2/18F16G11/10
    • Apparatus for securing an end region of a tensile armour wire within a flexible pipe end fitting, a method of securing an end region of at least one flexible pipe body tensile armour wire to an anchoring element and a method of terminating flexible pipe body in an end fitting are disclosed. The apparatus for securing an end region of a tensile armour wire within a flexible pipe end fitting comprises a rigid support body comprising at least one anchoring surface, at least one rotatable element comprising at least one first tooth member, supported on the support body and rotatable about a first axis of rotation with respect to the rigid support body and at least one abutment element disposed in a spaced apart relationship with the rotatable element. The rotatable element is rotatable about the first axis of rotation in a first direction of rotation, to permit a tensile armour wire end region of a tensile armour wire for a flexible pipe to be moved in a first direction between the rotatable element and the abutment element, and in a counter rotation direction of rotation when the armour wire end region is urged in a further direction opposite to the first direction, for preventing movement of the armour wire in the further direction.
    • 8. 发明申请
    • FAIL-SAFE HYDRAULIC CIRCUIT
    • 故障安全液压回路
    • WO2017009296A1
    • 2017-01-19
    • PCT/EP2016/066449
    • 2016-07-11
    • GE OIL & GAS UK LIMITED
    • SIMON, Stephane
    • F15B19/00F15B20/00
    • F15B20/008F15B19/005F15B2211/8626F15B2211/8636F15B2211/8752F15B2211/8755F15B2211/8757
    • A hydraulic circuit comprising: a hydraulic input A, a hydraulic output B, a first directional control valve 12 arranged between the hydraulic input and hydraulic output, and a second directional control valve arranged between the hydraulic input and hydraulic output in series with the first directional control valve, wherein the first directional control valve has a first position in which it inhibits the passage of hydraulic fluid from the hydraulic input to the hydraulic output and a second position in which it permits the passage of hydraulic fluid, the second directional control valve has a first position in which it inhibits the passage of hydraulic fluid from the hydraulic input to the hydraulic output and a second position in which it permits the passage of hydraulic fluid, and wherein the first and second directional control valves each require an energy input to be maintained in their respective second positions.
    • 一种液压回路,包括:液压输入A,液压输出B,布置在液压输入和液压输出之间的第一方向控制阀12和布置在液压输入和液压输出之间的第二方向控制阀,与第一定向 控制阀,其中所述第一方向控制阀具有第一位置,在所述第一位置中,所述第一位置阻止所述液压流体从所述液压输入端通向所述液压输出端;以及第二位置,其中允许所述液压流体通过,所述第二方向控制阀具有 第一位置,其阻止液压流体从液压输入到液压输出的通道;以及第二位置,其允许液压流体通过,并且其中第一和第二方向控制阀各自需要能量输入为 保持在其第二职位。
    • 10. 发明申请
    • CONFIGURABLE SUBSEA TREE MASTER VALVE BLOCK
    • 可配置的SUBSEA树主阀块
    • WO2016087610A1
    • 2016-06-09
    • PCT/EP2015/078575
    • 2015-12-03
    • GE OIL & GAS UK LIMITED
    • ROSS, Michael Stanely McRobbie
    • E21B33/035E21B33/043E21B33/047
    • E21B34/04E21B33/035E21B33/043E21B33/047
    • A method of manufacturing a configurable pre-machined forging for use with a multiple bore tubing hanger or a mono bore tubing hanger includes providing a configurable common master valve block with a main bore (46) along a main central axis (Ax). After providing the configurable common master valve block, a target subsea assembly is identified that has a mono bore subsea completion with a production bore along a central axis of a tubing hanger, or a multiple bore subsea completion with the production bore offset from the central axis of the tubing hanger. If the target subsea assembly has the mono bore subsea completion, the machining of a lower interface (62) of the common master valve block is centered around the main central axis (Ax). If the target subsea assembly has the multiple bore subsea completion, the machining has an eccentric interface axis (64) that is parallel to, and offset from, the main central axis (Ax).
    • 制造用于多孔管悬挂器或单孔管悬挂器的可配置预加工锻件的方法包括提供具有沿着主中心轴线(Ax)的主孔(46)的可配置的公共主阀块。 在提供可配置的公共主阀块之后,识别出目标海底组件,其具有沿着管道悬挂器的中心轴线的生产孔的单孔海底完井,或者具有从中心轴偏移的生产孔的多孔海底完井 的管衣架。 如果目标海底组件具有单孔海底完井,则公共主阀块的下部界面(62)的加工以主中心轴线(Ax)为中心。 如果目标海底组件具有多孔海底完井,则加工具有与主中心轴线(Ax)平行并偏离的偏心接口轴线(64)。