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    • 13. 发明申请
    • MODULAR CONTAINERIZED SEISMIC SOURCE SYSTEM
    • 模块化集装式地震源系统
    • WO2018089382A1
    • 2018-05-17
    • PCT/US2017/060459
    • 2017-11-07
    • SEABED GEOSOLUTIONS B.V.LAMOTHE, Jean-FrancoisHARTLAND, Martin JohnPOSTIC, Erwan Francois Marie
    • HARTLAND, Martin John
    • G01V1/20G01V1/38
    • Systems and methods for operating a modular and/or containerized seismic source array system from a marine vessel and installation of same on any vessel of opportunity. The system may be transported, stored, and operated in a plurality of containers, each of which may be CSC approved ISO shipping containers. The containers are attached to the marine vessel by a grid attachment frame installed on the back deck of the vessel, such that a wide variety of container configurations is possible. The containers may be placed longitudinally and transversely on the grid attachment frame and may be multiple levels high. A detachable/removeable slipway may be utilized at the rear of the vessel to facilitate deployment and retrieval of the source arrays. The source array system can be combined with an ocean bottom node deployment or recovery system on the same vessel by utilizing same or similar container footprints.
    • 用于从船舶操作模块化和/或集装箱化地震源阵列系统并将其安装在任何机会船上的系统和方法。 该系统可以在多个容器中运输,储存和操作,每个容器可以是CSC认可的ISO运输容器。 集装箱通过安装在船的后甲板上的网格附接框架附接到海运船,使得各种各样的集装箱配置成为可能。 容器可以纵向和横向放置在格栅附件框架上并且可以是多层高的。 可以在船的后部使用可拆卸/可拆卸的滑道以便于展开和取回源阵列。 通过使用相同或相似的容器覆盖区,源阵列系统可与同一船上的海底底部节点部署或回收系统相结合。
    • 14. 发明申请
    • A BRIDLE FOR A MARINE DEFLECTOR
    • 一个海洋偏转器的BR。
    • WO2018080311A1
    • 2018-05-03
    • PCT/NO2017/050258
    • 2017-10-02
    • POLARCUS DMCCGODØY, Erik
    • GODØY, Erik
    • G01V1/20B63B21/66
    • The invention relates to a bridle (1) for a marine deflector (2), comprising a tow point (3) for connecting to a towing cable (4), and bridle lines extending between the tow point (3) and bridle couplings (71, 72, 73, 74, 81, 82, 83, 84) of the deflector (2). At least one bridle line (51, 52, 61, 62) is Y-shaped with a node (91, 92, 93, 94) and three legs (51a-c, 52a-c, 61a-c, 62a-c), with one leg (51a, 52a, 61a, 62a) extending between the node (91, 92, 93, 94) and the tow point (3), and the two other legs (51b,c; 52b,c; 61b,c; 62b,c) extending between the node and respective bridle couplings (71, 72, 73, 74, 81, 82, 83, 84) of the deflector.
    • 本发明涉及用于海上偏转器(2)的缰绳(1),其包括用于连接到牵引缆线(4)的牵引点(3),以及在牵引点 (3)和偏转器(2)的桥接耦合器(71,72,73,74,81,82,83,84)。 至少一个张紧线(51,52,61,62)为带有节点(91,92,93,94)和三个腿(51a-c,52a-c,61a-c,62a-c)的Y形, ,在节点(91,92,93,94)与牵引点(3)之间延伸的一条腿(51a,52a,61a,62a)和另两条腿(51b,c; 52b,c; 61b, c; 62b,c),其在所述节点与所述偏转器的相应的张紧耦合件(71,72,73,74,81,82,83,84)之间延伸。
    • 17. 发明申请
    • OCEAN BOTTOM SENSING SYSTEM AND METHOD
    • 海底传感系统及方法
    • WO2017010875A1
    • 2017-01-19
    • PCT/NL2016/050508
    • 2016-07-08
    • FUGRO TECHNOLOGY B.V.
    • KARABACAK, Devrez MehmetFARNAN, Martin
    • G01V1/20G01V1/22G01V1/38
    • G01V1/201G01H9/004G01V1/226G01V1/3852
    • A system for ocean bottom sensing for performing geological survey. Herein the system comprising a cable further comprising a cable jacket (9), at least one optical fiber (6), and a plurality of detectors enclosed by the cable jacket (9). The latter including at least a first and a second detector (1, 2), the at least first and second detector (1, 2) comprising at least one intrinsic fiber optic sensor (3x, 3y, 3z, 3h, 3g, 3t). The detectors are communicatively connected to the at least one optical fiber (6) for allowing interrogation of the intrinsic fiber optic sensors (3x, 3y, 3z, 3h, 3g, 3t) and the cable jacket (9) has substantially a same cross-sectional diameter (D) and same outer shape at the at least first and second detector (1,2) and in between said first and second detector (1,2).
    • 用于执行地质勘测的海底探测系统。 这里,系统包括还包括电缆护套(9),至少一个光纤(6)和由电缆护套(9)包围的多个检测器的电缆。 后者包括至少第一和第二检测器(1,2),所述至少第一和第二检测器(1,2)包括至少一个本征光纤传感器(3x,3y,3z,3h,3g,3t) 。 检测器通信地连接到至少一个光纤(6),用于允许本征光纤传感器(3x,3y,3z,3h,3g,3t)的询问,并且电缆护套(9)具有基本上相同的横截面 在所述至少第一和第二检测器(1,2)处和所述第一和第二检测器(1,2)之间的截面直径(D)和相同的外形。