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    • 4. 发明申请
    • HIGH STRENGTH CONDUCTIVE CABLE
    • 高强度导电电缆
    • US20150325335A1
    • 2015-11-12
    • US14804237
    • 2015-07-20
    • Hjortur Erlendsson
    • Hjortur Erlendsson
    • H01B7/14H01B11/22H01B13/26H01B13/32H01B7/02H01B13/00
    • H01B7/145G01V1/201G01V2001/204H01B7/0208H01B7/0266H01B7/045H01B11/22H01B13/0006H01B13/22H01B13/2606H01B13/2626H01B13/32Y10T29/49117Y10T29/49119
    • A production method for a headline sonar cable (20, 120) that exhibits a high breaking-strength and lighter weight than a conventional steel headline sonar cable. Producing the headline sonar cable (20, 120) is characterized by the steps of: a. providing an elongatable internally-located conductive structure (34, 134) that is adapted for data signal transmission; and b. braiding a strength-member jacket layer (52) of polymeric material around the structure (34, 134) while ensuring that the structure (34, 134) is slack when surrounded by the jacket layer (52). The structure (34, 134) of the cable (20, 120) retains conductivity upon stretching of the jacket layer (52) surrounding the structure (34, 134) that lengthens the cable (20, 120). For one embodiment of the method a conductor (20) wrapped around a rod (24) and enclosed within a sheath layer (32) forms the structure (34, 134). For another embodiment of the method a braided conductor (122) enclosed within a braided sheath (124) and a polymeric layer (132) forms the structure (34, 134).
    • 一种标准声纳电缆(20,120)的制造方法,其具有比常规钢标题声纳电缆高的断裂强度和较轻的重量。 生产标准声纳电缆(20,120)的特征在于以下步骤:a。 提供适于数据信号传输的可伸长的位于内部的导电结构(34,134); 和b。 在所述结构(34,134)周围编织聚合物材料的强度构件护套层(52),同时确保当被所述护套层(52)包围时,所述结构(34,134)松弛。 电缆(20,120)的结构(34,134)在延伸围绕结构(34,134)的护套层(52)延伸电缆(20,120)时保持导电性。 对于该方法的一个实施例,缠绕在杆(24)上并封装在护套层(32)内的导体(20)形成结构(34,134)。 对于该方法的另一实施例,封闭在编织护套(124)和聚合物层(132)内的编织导体(122)形成结构(34,134)。
    • 6. 发明授权
    • Towing warp
    • 牵引经纱
    • US09110189B2
    • 2015-08-18
    • US14252747
    • 2014-04-14
    • Hjortur Erlendsson
    • Hjortur Erlendsson
    • G02B6/44G01V1/20H01B13/22H01B7/04
    • H01B7/145G01V1/201G01V2001/204H01B7/0208H01B7/0266H01B7/045H01B11/22H01B13/0006H01B13/22H01B13/2606H01B13/2626H01B13/32Y10T29/49117Y10T29/49119
    • A production method for a headline sonar cable (20, 120) that exhibits a high breaking-strength and lighter weight than a conventional steel headline sonar cable. Producing the headline sonar cable (20, 120) is characterized by the steps of: a. providing an elongatable internally-located conductive structure (34, 134) that is adapted for data signal transmission; and b. braiding a strength-member jacket layer (52) of polymeric material around the structure (34, 134) while ensuring that the structure (34, 134) is slack when surrounded by the jacket layer (52). The structure (34, 134) of the cable (20, 120) retains conductivity upon stretching of the jacket layer (52) surrounding the structure (34, 134) that lengthens the cable (20, 120). For one embodiment of the method a conductor (20) wrapped around a rod (24) and enclosed within a sheath layer (32) forms the structure (34, 134). For another embodiment of the method a braided conductor (122) enclosed within a braided sheath (124) and a polymeric layer (132) forms the structure (34, 134).
    • 一种标准声纳电缆(20,120)的制造方法,其具有比常规钢标题声纳电缆高的断裂强度和较轻的重量。 生产标准声纳电缆(20,120)的特征在于以下步骤:a。 提供适于数据信号传输的可伸长的位于内部的导电结构(34,134); 和b。 在所述结构(34,134)周围编织聚合物材料的强度构件护套层(52),同时确保当被所述护套层(52)包围时,所述结构(34,134)松弛。 电缆(20,120)的结构(34,134)在延伸围绕结构(34,134)的护套层(52)延伸电缆(20,120)时保持导电性。 对于该方法的一个实施例,缠绕在杆(24)上并封装在护套层(32)内的导体(20)形成结构(34,134)。 对于该方法的另一实施例,封闭在编织护套(124)和聚合物层(132)内的编织导体(122)形成结构(34,134)。
    • 7. 发明申请
    • Rigid-Stem Lead-In Method and System
    • 刚性导联方法和系统
    • US20140185411A1
    • 2014-07-03
    • US13729248
    • 2012-12-28
    • PGS GEOPHYSICAL AS
    • Rune Sindre Voldsbekk
    • G01V1/38
    • G01V1/38B63B21/56B63B21/66G01V1/201G01V1/3843G01V2001/204
    • Disclosed are methods and systems for using a rigid-stem lead-in assembly comprising a plurality of interconnected rigid stems in a marine geophysical survey. An embodiment discloses a method of towing a survey device from a survey vessel, comprising: coupling the survey device to the survey vessel with a lead-in comprising a rigid-stem lead-in assembly, the rigid-stem lead-in assembly comprising a plurality of rigid stems that are interconnected and each comprise a stem both defining one or more interior chambers; and towing the survey device through a body of water. Also disclosed are marine geophysical survey methods and marine survey systems.
    • 公开了用于在海洋地球物理勘测中使用包括多个互连的刚性杆的刚性杆引入组件的方法和系统。 一个实施例公开了一种从测量容器牵引测量装置的方法,包括:使用包括刚性杆引入组件的引入装置将测量装置耦合到测量容器,刚性杆引入组件包括 多个刚性杆,其互连并且每个都包括限定一个或多个内室的杆; 并通过一系列的水拖动测量装置。 还披露了海洋地球物理测量方法和海洋勘测系统。
    • 10. 发明申请
    • ROPE-TENSION SYSTEM FOR A MARINE SEISMIC CABLE
    • 海上地震电缆的拉伸系统
    • WO2013086280A1
    • 2013-06-13
    • PCT/US2012/068381
    • 2012-12-07
    • ION GEOPHYSICAL CORPORATION
    • OLIVIER, Andre, W.
    • G01V1/20G01V1/38
    • G01V1/38G01V1/202G01V2001/204
    • A rope-tension system for a marine seismic cable comprising a series of sensor nodes (12) connected between flexible cable sections (16) connected to other sensor nodes and flexible sections by armored cable segments (14). The flexible sections (16), which are housed in flexible protective covers (18), have a pair of ropes (44, 45) as stress members. The two ropes are pivotably pinned at both ends to termination units (20, 22) at the opposite ends of the flexible sections. The two ropes extend through a ring (38) positioned between the two termination units. The pivots at the rope ends form linkages with the ropes that allow the ropes to adjust their positions as the flexible section engages a curved surface during retrieval. The ring presents bearing surfaces with a large radius of curvature to the ropes to avoid sharp bending loads.
    • 一种用于海洋地震电缆的绳索张力系统,包括连接在通过铠装电缆段(14)连接到其它传感器节点的柔性电缆部分(16)和柔性部分之间的一系列传感器节点(12)。 容纳在柔性防护罩(18)中的柔性部分(16)具有作为应力部件的一对绳索(44,45)。 两根绳索在两端枢转固定在柔性部分相对两端的端接单元(20,22)上。 两个绳索延伸穿过位于两个终端单元之间的环(38)。 在绳索端部的枢轴形成与绳索的连接,当绳索在回收期间柔性部分接合弯曲表面时允许绳索调节其位置。 环向轴承提供具有大的曲率半径的轴承表面以避免尖锐的弯曲载荷。