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    • 12. 发明申请
    • IMPROVED HEADLINE SONAR CABLE
    • 改进的耳机线索
    • WO2009142766A2
    • 2009-11-26
    • PCT/US2009/003183
    • 2009-05-22
    • HAMPIDJAN, HFHAMPIDJAN USA, INC.ERLENDSSON, Hjortur
    • ERLENDSSON, Hjortur
    • B21C37/04
    • G01V1/201A01K73/025A01K75/00D07B1/147D07B2207/4045D07B2207/4059D07B2207/4072G01V2001/204
    • 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),同时确保所述结构(34,134)在被所述护套层(52)包围时松弛。所述电缆的结构(34,134) (20,120)在围绕延长电缆(20,120)的结构(34,134)的护套层(52)的拉伸时保持导电性。 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)。
    • 15. 发明申请
    • GEL AND FOAM SEISMIC STREAMER
    • 凝胶和泡沫地震流
    • WO2017112436A1
    • 2017-06-29
    • PCT/US2016/066049
    • 2016-12-11
    • WESTERNGECO LLCSCHLUMBERGER CANADA LIMITEDSCHLUMBERGER TECHNOLOGY B.V.
    • GUIZELIN, Fabien
    • G01V1/38
    • G01V1/201G01V2001/204G01V2001/207
    • A seismic streamer can include an outer tube that defines an interior space having a longitudinal axis; sensor packages disposed in the interior space at respective positions along the longitudinal axis; a rope disposed in the interior space and offset from the longitudinal axis; and gel filled foam disposed in the interior space at least in part between the sensor packages and at least in part about portions of the rope where the gel filled foam includes a water swellable material that, responsive to a breach in the outer tube and contact with water, transitions the gel filled foam from an unswollen state to a swollen state that hinders gel leakage from the breach in the outer tube.
    • 地震拖缆可以包括限定具有纵向轴线的内部空间的外管; 传感器封装,所述传感器封装布置在所述内部空间中沿着所述纵向轴线的相应位置处 设置在所述内部空间中且偏离所述纵向轴线的绳索; 以及凝胶填充泡沫,所述凝胶填充泡沫布置在所述内部空间中,至少部分地位于所述传感器封装之间,并且至少部分地围绕所述绳索的部分,其中所述凝胶填充泡沫包括水溶胀性材料,所述水溶胀性材料响应于所述外管中的裂口并与 水将凝胶填充的泡沫从未溶胀状态转变为溶胀状态,从而阻止凝胶从外管中的裂口渗漏。
    • 16. 发明申请
    • TRANSVERSE VIBRATION ATTENUATION MECHANISM AND METHOD FOR MARINE SEISMIC ACQUISITION SYSTEM
    • 横向振动衰减机制及海洋地震采集系统方法
    • WO2016181222A1
    • 2016-11-17
    • PCT/IB2016/000737
    • 2016-05-10
    • CGG SERVICES SA
    • SIMONNOT, FrédéricGRANHOLT, Jason
    • G01V1/20G01V1/38
    • G01V1/202B63B21/66B63B21/663B63B2211/02G01V1/201G01V1/3843G01V2001/204
    • A front-end gear (608) connects a streamer (604) to a vessel (600). The front-end gear (608) includes a lead-in (614) that connects to the streamer (604), a first bend limiting element (636) attached to the lead-in and to a float (630) that floats at a sea surface, a second bend limiting element (660) attached to the lead-in, a distance L away from the first bend limiting element (636), and a depressor (662) attached to the second bend limiting element (660). The float (630) generates a first force (F1) on the lead-in and the depressor generates a second force (F2) on the lead-in when the lead-in is towed underwater. The first and second forces act to apply a tension in a portion of the lead-in spanning the distance L, to reduce transversal noise propagation toward the streamer.
    • 前端齿轮(608)将拖缆(604)连接到容器(600)。 前端齿轮(608)包括连接到拖缆(604)的引入件(614),附接到引入件的第一弯曲限制元件(636)和浮动在浮动件 附接到引入件的第二弯曲限制元件(660),远离第一弯曲限制元件(636)的距离L以及附接到第二弯曲限制元件(660)的压力机(662)。 浮子(630)在引入部分产生第一力(F1),并且当引入物在水下被拖曳时,压下器在引入件上产生第二力(F2)。 第一和第二力作用于在跨越距离L的导入部分中施加张力,以减小朝向拖缆的横向噪声传播。
    • 20. 发明公开
    • IMPROVED HEADLINE SONAR CABLE
    • 改进的HEADLINE SONAR电缆
    • EP2313214A2
    • 2011-04-27
    • EP09750997.0
    • 2009-05-22
    • Hampidjan, HFHampidjan USA, Inc.
    • ERLENDSSON, Hjortur
    • B21C37/04
    • G01V1/201A01K73/025A01K75/00D07B1/147D07B2207/4045D07B2207/4059D07B2207/4072G01V2001/204
    • 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).
    • 一种标题声纳电缆(20,120)的生产方法,其与传统钢标题声纳电缆相比表现出高的断裂强度和更轻的重量。 生产标题声纳电缆(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内部定位的导电结构(34,134) 和b。 在结构(34,134)周围编织聚合物材料的强度构件护套层(52),同时确保当被护套层(52)围绕时结构(34,134)松弛。缆线的结构(34,134) (20,120)在围绕延长所述电缆(20,120)的所述结构(34,134)的所述护套层(52)的拉伸时保持导电性。 对于该方法的一个实施例,缠绕在杆(24)周围并被包围在护套层(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)。