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    • 1. 发明申请
    • COUPLING ASSEMBLY FOR CONVEYING PRESSURIZED GAS WITH EMERGENCY RELEASE SYSTEM
    • 用紧急释放系统输送加压气体的联轴器组件
    • WO2016096934A1
    • 2016-06-23
    • PCT/EP2015/079908
    • 2015-12-15
    • SHELL INTERNATIONALE RESEARCH MAATSCHAPPIJ B.V.SHELL OIL COMPANY
    • KRUIJER, Alfred
    • F16L37/373B63B27/24F16L37/62F16L55/10
    • F16L55/1007B63B27/34B63B2035/448F16L37/373F16L37/62
    • A coupling assembly for coupling a first gas conduit (1) and a second gas conduit(2) for conveying a pressurized gas stream between a floating structure and another structure, comprising -a coupling device (3) arranged for coupling the first gas conduit (1) and the second gas conduit(2), wherein gas present in the gas connection has a gas pressure, -a gas actuator (4) comprising an engagement member (41), wherein the engagement member (41) is moveable between a first and second position, wherein the first position is associated with the closed state of the coupling device (3) and the second position is associated with the open state of the coupling device (3). The gas actuator (4) is or can be brought in gas communication with the gas connection and the gas pressure forces the engagement member (41) to the first position.
    • 一种用于联接第一气体管道(1)和第二气体导管(2)的联接组件,用于在浮动结构和另一结构之间输送加压气体流,包括:联接装置(3),其被布置成用于联接第一气体导管 1)和第二气体导管(2),其中存在于气体连接中的气体具有气体压力, - 气体致动器(4),包括接合构件(41),其中接合构件(41)可在第一 和第二位置,其中所述第一位置与所述联接装置(3)的关闭状态相关联,并且所述第二位置与所述联接装置(3)的打开状态相关联。 气体致动器(4)与气体连接处于或可以与气体连通地进行气体连通,并且气体压力迫使接合构件(41)到达第一位置。
    • 3. 发明申请
    • FRESNEL LENS OPTICAL ALIGNMENT SYSTEM
    • FRESNEL镜头光学对准系统
    • WO2015050975A1
    • 2015-04-09
    • PCT/US2014/058602
    • 2014-10-01
    • LOCKHEED MARTIN CORPORATION
    • FISK, Bryan Neal
    • B63C1/02G01B11/14
    • G02B3/08B60Q9/002B63B27/24B63B27/34B63C1/02B63C1/10G08G3/02G08G5/0021G08G5/045
    • An optical alignment system is provided that simplifies the alignment of two vehicles, for example during a docking procedure, and provides visual cues indicating range to prevent accidental collision. The optical alignment system includes a horizontal array of Fresnel lenses including a first plurality of Fresnel lenses disposed on one side of a vertical axis and a second plurality of Fresnel lenses disposed on the opposite side of the vertical axis. One Fresnel lens of the first plurality and one Fresnel lens of the second plurality are spaced equidistant from the vertical axis and form a first pair, and the Fresnel lenses of the first pair are arranged so that light paths therefrom converge along the vertical axis at a first distance behind the horizontal array of lights.
    • 提供了一种光学对准系统,其例如在对接过程期间简化两个车辆的对准,并且提供指示范围的视觉提示以防止意外碰撞。 光学对准系统包括菲涅尔透镜的水平阵列,其包括设置在垂直轴的一侧上的第一多个菲涅耳透镜和设置在垂直轴的相对侧上的第二多个菲涅耳透镜。 第一多个第一和第二菲涅尔透镜中的一个菲涅耳透镜与垂直轴等距离地形成第一对,并且第一对的菲涅耳透镜被布置成使得其光路沿着垂直轴会聚在一个 第一个距离后面的水平阵列灯。
    • 4. 发明申请
    • DOUBLE HOSE DEVICE
    • 双软管设备
    • WO2015038001A1
    • 2015-03-19
    • PCT/NO2014/050156
    • 2014-09-02
    • SAFEHOSE HOLDING AS
    • GJERDE, Roger
    • F16L33/01F16L39/02
    • F16L11/133B63B27/34F16L11/20F16L33/01F16L39/02F16L2201/30F17D5/02
    • Device for a double hose structure (11) with an inner main hose (12) and an outer cover hose (13) defining an annular space (14) intended to give the hose buoyancy in water, and where at least one end is provided with a coupling member (15) forming a mount for the main hose (12) and the cover hose (13) and which at a free end merges into a threaded portion (22) for connecting the hose assembly (11) to an auxiliary connection. The coupling member (15) comprises an inner coupling sleeve (16) which is tightly connected to one end of the main hose (12) and an outer coupling sleeve (18) which is tightly connected to the cover hose (13), the inner (16) and outer coupling sleeves (18) being mutually connected to form a liquid tight termination of the annulus (14) by means of an ring-shaped plate (30). The ring-shaped plate (30) is attached with a number of screws (25) through holes (29) only to the outer sleeve (18), the ring-shaped plate (30) being forced against a shoulder (20) of the inner coupling sleeve (16) by a ring nut (40) with internal threads that match external threads (21) on the inner sleeve (16).
    • 用于具有内部主软管(12)和外部覆盖软管(13)的双层软管结构(11)的装置,所述外部软管限定了用于在水中给出软管浮力的环形空间(14),并且其中至少一个端部设置有 形成用于主软管(12)和盖软管(13)的安装件的联接构件(15),并且在自由端处并入用于将软管组件(11)连接到辅助连接件的螺纹部分(22)。 联接构件(15)包括紧密连接到主软管(12)的一端的内部联接套筒(16)和紧密连接到盖子软管(13)的外部联接套筒(18),内部 (16)和外联接套管(18)相互连接,以通过环形板(30)形成环形空间(14)的液密端接。 环形板(30)仅通过多个螺钉(25)通孔(29)附接到外套筒(18),环形板(30)被迫靠在 内部联接套筒(16)由具有与内部套筒(16)上的外螺纹(21)的内螺纹的环形螺母(40)连接。
    • 6. 发明申请
    • COUPLINGS AND VALVES
    • 联轴器和阀门
    • WO2014167343A1
    • 2014-10-16
    • PCT/GB2014/051130
    • 2014-04-10
    • ALPHA PROCESS CONTROLS INTERNATIONAL LIMITED
    • ROWE, EllisBLACKWELL, John
    • F16L37/30
    • F16L37/30B63B27/34F16L55/1007
    • A valve is provided for use in a fluid flow line with first and second parts connectable to define a fluid flow path through the valve. A first valve member (36) is operable in the first part and a second valve member (38) is operable in the second part, and the valve members are arranged for movement between an open position and a closed position for shutting off fluid flow. The valve includes a closure mechanism (46) for activating movement of the valve members from the open position to the closed position, and a separation mechanism (48) for allowing the first and second parts of the valve to separate from one another. The valve has a fluid transfer mode of operation and a separation mode of operation. In the fluid transfer mode of operation, the first and second parts of the valve are connected together, the first and second valve members are in an open position and fluid can flow along the flow path through the valve. In the separation mode of operation, the separation mechanism is operable to separate the first and second parts of the valve, after operation of the closure mechanism.
    • 提供用于流体流动管线的阀,其中第一和第二部件可连接以限定通过阀的流体流动路径。 第一阀构件(36)可在第一部分中操作,第二阀构件(38)可在第二部分中操作,并且阀构件布置成在打开位置和关闭位置之间移动以关闭流体流动。 该阀包括用于启动阀构件从打开位置移动到关闭位置的闭合机构(46),以及用于允许阀的第一和第二部分彼此分离的分离机构(48)。 阀具有流体转移操作模式和分离操作模式。 在流体转移操作模式中,阀的第一和第二部分连接在一起,第一和第二阀构件处于打开位置,并且流体可以沿着流过该阀的流动路径流动。 在分离操作模式中,分离机构可操作以在闭合机构操作之后分离阀的第一和第二部分。
    • 7. 发明申请
    • EMERGENCY RELEASE
    • 紧急释放
    • WO2014122123A1
    • 2014-08-14
    • PCT/EP2014/052138
    • 2014-02-04
    • AKER PUSNES AS
    • ALBRIGTSEN, RolfHØVIK, Jon
    • B63B27/24B63B27/34B67D7/32B67D9/00
    • B63B27/24B63B27/34B67D9/00
    • The invention concerns an arrangement for emergency release of a hose end valve (13) from its connected position with a connector valve (14) which is connected to receiving assembly (90) arranged on a first structure (80) located in water. The hose end valve (13) is provided at a hose end (63) of a hose which carries fluid especially LNG and/or vaporized LNG, and a first end portion of a hose end suspension line (27) is attached to the hose end valve (13), and is suspended in a support structure (200) by at least one line guiding element (31, 28,). A a second end portion of the hose end suspension line (27) is attached to a counterweight (22), wherein the at least one line guiding element (31, 28) is arranged in an elevated position compared to the position of the hose end (63) with the hose end valve (13) and the position of the counterweight (22), thereby providing for a weight balancing relationship. In an emergency release mode the hose end valve (13) is separated from the connector valve (14), and as the weight of the hose end (63) and the hose end valve (13) without the connector valve (14) is smaller than the counterweight (22), the counterweight (22) causes the hose end (63) with the hose end valve (13) to be pulled away from the receiving assembly (90). The invention also concerns a method for emergency release.
    • 本发明涉及一种用于从其连接位置紧急释放软管端阀(13)的装置,连接器阀(14)连接到布置在位于水中的第一结构(80)上的接收组件(90)。 软管端阀(13)设置在软管的软管端(63),该软管端承载流体尤其是LNG和/或蒸发的LNG,并且软管端悬挂线(27)的第一端部连接到软管端 阀(13),并且通过至少一个线引导元件(31,28)悬挂在支撑结构(200)中。 软管端部悬挂线(27)的第二端部连接到配重(22)上,其中至少一个线引导元件(31,28)与软管端部的位置相比被布置在升高位置 (63)与软管端阀(13)和配重(22)的位置,从而提供重量平衡关系。 在紧急释放模式中,软管端阀(13)与连接阀(14)分离,并且随着没有连接阀(14)的软管端部(63)和软管端阀(13)的重量较小 配重(22)使软管末端(63)与软管端阀(13)从接收组件(90)拉开。 本发明还涉及一种用于紧急释放的方法。
    • 8. 发明申请
    • ARRANGEMENTS AND A METHOD FOR CONNECTION AND DISCONNECTION OF AT LEAST ONE HOSE CARRYING FLUID ESPECIALLY LNG AND/OR VAPORIZED LNG
    • 安装和连接和断开承载流体特别液化天然气和/或蒸汽LNG的最小一个软管的方法
    • WO2014122122A1
    • 2014-08-14
    • PCT/EP2014/052137
    • 2014-02-04
    • AKER PUSNES AS
    • ALBRIGTSEN, RolfHØVIK, Jon
    • B63B27/24B63B27/34B67D7/32B67D9/00
    • B63B27/24B63B27/34B67D9/00
    • The invention concerns arrangements for connection of at least one hose carrying fluid especially LNG and/or vaporized LNG. A hose end (63) of the at least one hose has a hose end connector (91) to be connected to a receiving assembly (90) on a first structure (80) located in water. The hose end connector (91) is provided with guide means (102) and the receiving assembly (90) is provided with receiving means (71). The arrangement includes handling means for controlling the hose end connector (91) to position the guide means (102) into the receiving means (71) and accommodate the guide means (102) in the receiving means (71) so that the guide means (102) is supported in the receiving means (71) and the weight of the hose end connector (91) is transferred to the receiving means (71). The hose end connector (91) has a connecting position with a receiving pipe coupling (15) in the receiving assembly (90), with one receiving pipe coupling (15) provided for each hose end connector (91). The invention also includes methods for connection and disconnection of at least one hose carrying fluid especially LNG and/or vaporized LNG.
    • 本发明涉及用于连接至少一个软管承载流体,特别是LNG和/或蒸发的LNG的布置。 所述至少一个软管的软管端(63)具有连接到位于水中的第一结构(80)上的接收组件(90)的软管端连接器(91)。 软管端连接器(91)设置有引导装置(102),并且接收组件(90)设有接收装置(71)。 该装置包括用于控制软管端连接器(91)以将引导装置(102)定位到接收装置(71)中并将引导装置(102)容纳在接收装置(71)中的处理装置,使得导向装置 102)被支撑在接收装置(71)中,软管端连接器(91)的重量被传送到接收装置(71)。 软管端连接器(91)在接收组件(90)中具有与接收管接头(15)的连接位置,为每个软管端连接器(91)提供一个接收管接头(15)。 本发明还包括用于连接和断开至少一个软管承载流体,特别是LNG和/或蒸发的LNG的方法。
    • 10. 发明申请
    • SYSTÈME ET PROCÉDÉ DE TRANSFERT DE FLUIDE
    • 用于输送流体的系统和方法
    • WO2014068260A1
    • 2014-05-08
    • PCT/FR2013/052617
    • 2013-10-31
    • FMC TECHNOLOGIES SA
    • FUSY, JoëlPELLETIER, Frédéric
    • B67D9/02
    • B67D9/02B63B27/34B63B2017/0072
    • Un système de transfert (1 ) d'un produit fluide, comportant un bras équilibré de transfert (10) du produit fluide, ayant un compas de transfert (13,14) comportant une ligne de transfert ayant une extrémité de ligne fixée à un support et une extrémité de ligne mobile (23) pourvue d'un organe de connexion/déconnexion (12) destiné au raccordement de la ligne à une tubulure cible (24), caractérisé en ce qu'il comporte en outre un bras télescopique (25) adapté à être solidarisé par l'une de ses extrémités longitudinales à l'extrémité de ligne mobile (23) pour déplacer celle-ci vers une position de raccordement de l'organe de connexion/déconnexion (12) à la tubulure cible (24) et monté par son extrémité longitudinale opposée sur un robot parallèle (25) commandé en dépendance de la détection de mouvements que subit la tubulure cible (24) pour compenser au niveau de l'organe de connexion/déconnexion des mouvements de la tubulure cible.
    • 一种用于传送流体产品的系统(1),包括用于传送流体产品的平衡臂(10),具有传送罗盘(13,14),传送罗盘包括具有固定到支撑件的线端的传送线和移动线端 (23),其设置有用于将所述管线连接到目标管道(24)的连接/断开构件(12),其特征在于,所述连接/断开构件还包括伸缩臂(25),所述伸缩臂设计成通过其中的一个纵向端固定 移动到所述移动线路端部(23),以便将所述端部移动到连接/断开构件(12)连接到所述目标管道(24)的位置,并且经由其相对的纵向端部安装到平行机器人(25 )根据对目标管(24)所经历的移动的检测进行控制,以便在连接/断开构件处补偿目标管的运动。