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    • 16. 发明授权
    • Connector for seismic cable
    • 地震电缆连接器
    • US07933165B2
    • 2011-04-26
    • US12203791
    • 2008-09-03
    • James N. ThompsonEtienne MarcRichard CampbellRichard E. Nye
    • James N. ThompsonEtienne MarcRichard CampbellRichard E. Nye
    • G01V1/52G01V1/38
    • H01R13/523G01V1/201H01R13/533H01R13/622H01R39/643
    • A method and apparatus for a seismic cable is described. The apparatus includes a plurality of cable segments comprising at least a first cable segment and a second cable segment coupled by a connector. The connector comprises a cylindrical body having a first diameter, a portion of the body having a second diameter that is smaller than the first diameter and centrally positioned between opposing ends of the body, a first coupling section having a terminating end of the first cable segment anchored therein, and a second coupling section having a terminating end of the second cable segment anchored therein, at least a portion of the first and second coupling sections being rotatably coupled to respective ends of the body, wherein the connector isolates the first cable segment from the second cable segment. A method of deployment and retrieval of the seismic cable is also described.
    • 描述了一种用于地震电缆的方法和装置。 该设备包括多个电缆段,其包括至少第一电缆段和由连接器联接的第二电缆段。 所述连接器包括具有第一直径的圆柱体,所述主体的一部分具有小于所述第一直径的第二直径并居中定位在所述主体的相对端之间,第一联接部分具有所述第一缆线段的终止端 锚固在其中,以及第二联接部分,其具有锚固在其中的第二缆线段的终止端,第一和第二联接部分的至少一部分可旋转地联接到主体的相应端部,其中连接器将第一缆线段与 第二条电缆段。 还描述了地震电缆的部署和检索方法。
    • 17. 发明申请
    • STORAGE SYSTEM AND METHOD FOR SEISMIC DATA ACQUISITION UNITS
    • 地震数据采集单元的存储系统和方法
    • US20100293245A1
    • 2010-11-18
    • US12781586
    • 2010-05-17
    • Clifford H. RayGlenn D. FisselerJames N. ThompsonHal B. Haygood
    • Clifford H. RayGlenn D. FisselerJames N. ThompsonHal B. Haygood
    • G06F15/16
    • G01V1/3808G01V1/166G01V1/18G01V1/247G01V1/38G01V1/3852G01V2210/1427Y10T24/39
    • A marine seismic exploration method and system comprised of continuous recording, self-contained ocean bottom pods characterized by low profile casings. An external bumper is provided to promote ocean bottom coupling and prevent fishing net entrapment. Pods are tethered together with flexible, non-rigid, non-conducting cable used to control pod deployment. Pods are deployed and retrieved from a boat deck configured to have a storage system and a handling system to attach pods to cable on-the-fly. The storage system is a juke box configuration of slots wherein individual pods are randomly stored in the slots to permit data extraction, charging, testing and synchronizing without opening the pods. A pod may include an inertial navigation system to determine ocean floor location and a rubidium clock for timing. The system includes mathematical gimballing. The cable may include shear couplings designed to automatically shear apart if a certain level of cable tension is reached.
    • 海洋地震勘探方法和系统由连续记录,独立的海底荚组成,其特征在于薄型壳体。 提供一个外部保险杠,以促进海底耦合并防止捕鱼网捕获。 荚被捆绑在一起,用于控制荚部署的柔性,非刚性,不导电的电缆。 从配置成具有存储系统的船甲板部署和检索荚,并且将荚直接连接到缆线。 存储系统是插槽的自动点播机配置,其中单独的盒被随机存储在插槽中,以允许数据提取,充电,测试和同步而不打开盒。 荚可以包括用于确定海底位置的惯性导航系统和用于定时的铷钟。 该系统包括数学gimballing。 电缆可以包括设计成如果达到一定水平的电缆张力时自动分开的剪切耦合。
    • 20. 发明申请
    • Cable clamping sleeve for ocean bottom seismic recording system
    • 海底地震记录系统电缆夹套
    • US20080181055A1
    • 2008-07-31
    • US12004529
    • 2007-12-21
    • Clifford H. RayGlenn D. FisselerJames N. ThompsonHal B. Haygood
    • Clifford H. RayGlenn D. FisselerJames N. ThompsonHal B. Haygood
    • G01V1/38F16G11/00
    • A marine seismic exploration method and system comprised of continuous recording, self-contained ocean bottom pods characterized by low profile casings. An external bumper is provided to promote ocean bottom coupling and prevent fishing net entrapment. Pods are tethered together with flexible, non-rigid, non-conducting cable used to control pod deployment. Pods are deployed and retrieved from a boat deck configured to have a storage system and a handling system to attach pods to cable on-the-fly. The storage system is a juke box configuration of slots wherein individual pods are randomly stored in the slots to permit data extraction, charging, testing and synchronizing without opening the pods. A pod may include an inertial navigation system to determine ocean floor location and a rubidium clock for timing. The system includes mathematical gimballing. The cable may include shear couplings designed to automatically shear apart if a certain level of cable tension is reached.
    • 海洋地震勘探方法和系统由连续记录,独立的海底荚组成,其特征在于薄型壳体。 提供一个外部保险杠,以促进海底耦合并防止捕鱼网捕获。 荚被捆绑在一起,用于控制荚部署的柔性,非刚性,不导电的电缆。 从配置成具有存储系统的船甲板部署和检索荚,并且将荚直接连接到缆线。 存储系统是插槽的自动点播机配置,其中单独的盒被随机存储在插槽中,以允许数据提取,充电,测试和同步而不打开盒。 荚可以包括用于确定海底位置的惯性导航系统和用于定时的铷钟。 该系统包括数学gimballing。 电缆可以包括设计成如果达到一定水平的电缆张力时自动分开的剪切耦合。