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    • 93. 发明公开
    • HYDROCARBON TRANSFER SYSTEM WITH A PIVOTAL BOOM
    • 系统为输烃与可枢转的悬臂
    • EP2240362A2
    • 2010-10-20
    • EP08857856.2
    • 2008-12-03
    • Single Buoy Moorings Inc.
    • BAUDIN, ChristianBRAUD, JeanBENOIT, Jean Pierre
    • B63B27/24
    • B63B27/24
    • The invention relates to a hydrocarbon transfer system comprising an offshore structure, a support member extending upward from deck level of the structure, a hydrocarbon transfer duct comprising a transfer duct section extending from a free end of the support member, which free end is located outboard of the structure, to a hydrocarbon storage and/or processing unit on the structure and a connecting duct section in fluid communication with the transfer duct section and connected with a first end to the free end of the support member, a second end of the connecting duct section having a connector and being attachable to a hydrocarbon vessel, characterised in that, the support member comprises a displacement device, connected to the first end of the connecting duct section, which displacement device is movable between a connect and a disconnect position while the support member remains substantially stationary, a vertical distance from deck level of the displacement device being larger for the disconnect position than for the connect position, a horizontal distance from the side of the structure being larger for the connect position than for the disconnect position, wherein in the disconnect position, the connecting duct section in its vertical orientation is situated with its connector at a predetermined distance above sea level.
    • 96. 发明公开
    • Method for installing an off-shore structure
    • Verfahren zur安装einer Off-Shore-Struktur
    • EP2014546A1
    • 2009-01-14
    • EP07112184.2
    • 2007-07-10
    • Single Buoy Moorings, Inc.
    • Wille, HeinPollack, Jack
    • B63B21/50B63B9/06
    • B63B9/065B63B21/50B63B21/502B63B2001/044
    • An off-shore structure is installed in a body of water. The body of water extends above a floor, such as a seabed, and has a water surface. A buoyant pontoon and a top structure are provided separately from each other. The top structure has a deck, a plurality of legs that are connected to the deck, and a jacking system for displacing the legs relative to the deck. The pontoon is submerged below the water surface. The submerged pontoon is connected to the floor with tendons. The top structure is aligned above the submerged pontoon connected to the floor. Then, the legs are jacked-down relative to the deck until the legs abut against the submerged pontoon connected to the floor. Subsequently, the jacked-down legs are attached to the submerged pontoon and the deck is jacked-up relative to the pontoon until the deck is standing above the water surface. A number of risers are installed for providing a fluid communication between the floor and the deck after jacking up the deck above the water surface.
    • 离岸结构安装在水体中。 水体在地板上方延伸,如海床,并有水面。 漂浮的浮筒和顶部结构彼此分开设置。 顶部结构具有甲板,连接到甲板的多个腿,以及用于相对于甲板移位腿的顶起系统。 浮船被淹没在水面以下。 淹没的浮桥用腱连接到地板上。 顶部结构在连接到地板的淹没浮桥上方对齐。 然后,腿部相对于甲板被压下,直到腿部抵靠连接到地板的淹没的浮筒。 随后,起重脚被连接到淹没的浮筒,甲板相对于浮筒被抬起,直到甲板站在水面之上。 安装多个立管,用于​​在水面上方的甲板上升之后,在地板和甲板之间提供流体连通。
    • 97. 发明公开
    • Riser installation method from an offshore production unit
    • 埃菲尔铁矿公司
    • EP1739279A1
    • 2007-01-03
    • EP05105983.0
    • 2005-06-30
    • SINGLE BUOY MOORINGS INC.
    • Pollack, JackWille, Hein
    • E21B43/01B63B22/02B63B27/24F16L1/15
    • E21B43/0107
    • The invention relates to a riser installation method comprising the steps of:
      a. providing a first vessel situated over a hydrocarbon well ,
      b. supporting a hydrocarbon transfer duct from the first vessel by a first end that is attached to a lowering device on the first vessel,
      c. attaching a second end of the hydrocarbon duct to a second vessel, at a position near the first vessel,
      d. lowering the transfer duct via the lowering device,
      e. increasing the distance of the second vessel from the first vessel by sailing the second vessel in the direction of a third vessel, which is moored in a mooring position at a distance from the first vessel, while pulling the transfer duct until the second vessel is near the third vessel,
      f. contacting a section of the transfer duct with the sea bed at a position between the first and second ends of the transfer duct,
      g. displacing the second end of the transfer duct over a distance from the first vessel, seen in the length direction of the transfer duct, which is larger than the distance between the first vessel and the mooring position of the third vessel,
      h. returning the second end of transfer duct to mooring position of the third vessel, and
      f. bringing the second end of the hydrocarbon transfer duct in fluid communication with the third vessel.
    • 本发明涉及一种立管安装方法,包括以下步骤:a。 提供位于烃井之上的第一艘船,b。 c。通过附接到第一容器上的降低装置的第一端,从第一容器支撑烃输送管道,c。 在第一容器附近的位置处将烃管道的第二端附接到第二容器,d。 通过下降装置降低传送管道, 通过沿着第三容器的方向将第二容器的距离从第一容器升高到第二容器的距离,该第三容器停泊在离第一容器一定距离处的系泊位置的同时,同时拉动传送管道直到第二容器接近 第三艘船,f。 在传送管道的第一和第二端之间的位置处,将传送管道的一部分与海床接触,g。 在传送管道的长度方向上看,传送管道的第二端与第一容器相距一定距离,该距离大于第一容器和第三容器的系泊位置之间的距离h。 将传送管道的第二端返回到第三艘船舶的系泊位置,f。 使得碳氢化合物输送管道的第二端与第三容器流体连通。
    • 98. 发明公开
    • Cryogenic transfer hose
    • Schlauch zumBefördernvon kryogenen流体
    • EP1731823A1
    • 2006-12-13
    • EP05105011.0
    • 2005-06-08
    • SINGLE BUOY MOORINGS INC.
    • Queau, Jean-PierrePollack, JackWille, Heinvan Dijk, Liselotte
    • F16L39/02F16L59/14F16L11/20
    • F16L59/143F16L39/005F16L39/02Y10S285/904
    • The invention relates to a flexible cryogenic transfer hose (7) for connecting two cryogenic facilities (2,8), the hose (7) in use extending in a maritime environment and having a length of at least 30 m, preferably at least 100m, comprising:
      - an inner hose (10) with at least two segments (12,13), the inner hose segments (12,13) being interconnected via two inner connecting members (16,17), with a diameter larger than an outer diameter of the inner hose (10), the inner hose (10) being flexible and comprising a flexible reinforced wall, the inner hose (10) having an internal diameter of at least 20 cm,
      - an outer hose (11) surrounding the inner hose (10) comprising a watertight reinforced elastomeric material, the outer hose (11) comprising at least two segments (20,21), the outer hose segments (20,21) being interconnected via two outer connecting members (24,25), the outer hose (11) having a wall thickness of at least 3 cm and a bend radius of at least 3 m, and an internal diameter of at least 25 cm,
      the inner hose (10) being kept at a distance from the outer hose (11) via a number of spacer elements (28,29) bridging the distance h i between an outer wall of the inner hose (10) and an inner wall of the outer hose (11), which distance is between 0.1 and 0.8 times the internal diameter d i of the inner hose (10), wherein a longitudinal position of a pair of connecting members (16,17) of the inner hose (10) is situated at or near a longitudinal position of a pair of connecting members (24,25) of the outer hose (11).
    • 本发明涉及一种用于连接两个低温设备(2,8)的灵活的低温输送软管(7),在海洋环境中使用的软管(7)的长度至少为30米,优选至少为100米, 包括:具有至少两个段(12,13)的内软管(10),所述内软管段(12,13)经由两个内连接构件(16,17)互连,直径大于外径 所述内软管(10)是柔性的并且包括柔性增强壁,所述内软管(10)具有至少20cm的内径, - 围绕所述内软管(10)的外软管(11) (10)包括水密增强的弹性体材料,所述外软管(11)包括至少两个段(20,21),所述外软管段(20,21)经由两个外连接构件(24,25)互连,所述外软管段 外软管(11)具有至少3cm的壁厚和至少3μm的弯曲半径和内径 至少25厘米,内软管(10)经由多个间隔元件(28,29)与外软管(11)保持一段距离,间隔元件(28,29)将内软管(10)的外壁和 外软管(11)的内壁,其距离为内软管(10)的内径di的0.1至0.8倍,其中内软管的一对连接构件(16,17)的纵向位置 (10)位于外软管(11)的一对连接构件(24,25)的纵向位置处或附近。
    • 99. 发明公开
    • SUBSEA PIPELINE SYSTEM
    • 水下管道系统
    • EP1588084A1
    • 2005-10-26
    • EP04706388.8
    • 2004-01-29
    • SINGLE BUOY MOORINGS INC.
    • POLLACK, JackWILLE, HeinPOLDERVAART, Leendert
    • F16L1/14B63B22/02
    • F16L1/14B63B27/24
    • The invention relates to a subsea pipeline system (1) for connecting two hydrocarbon production, storage and/or processing structures. The subsea pipeline comprises a first duct section (2) supported on the seabed (4), a bridging duct section (6) extending across a lower seabed part (5), at a distance from the sea bed, and a second duct section (3) supported on the sea bed, the first and second duct sections being connected to the bridging duct section via an articulation joint (7, 8) allowing movement of the bridging duct section (6) in a length direction (L) of the first and second duct sections, wherein a first tensioning element (12, 37, 41) is with a first end (14) connected to the bridging duct section (6) at or near the articulation joint (7) and with a second end (15) to a lifting structure (9, 36) which is located at a relatively short distance above the bridging duct section (6), for exerting an upward force thereon, and a second tensioning element (19, 30, 38) connected with one end to the bridging duct section (6) and with the other end to a downward pulling structure (17, 31, 39), which is located below the bridging duct section (6), the first and second tensioning elements (12, 19, 30, 37, 38, 39, 41) including a mutual angle (a) such as to exert a horizontal pulling force on the bridging duct section.