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    • 1. 发明授权
    • Electronics-carrying module
    • 电子携带模块
    • US07120087B2
    • 2006-10-10
    • US10502342
    • 2003-01-24
    • Paul LeeRobert Dowle
    • Paul LeeRobert Dowle
    • G01V1/38
    • G01V1/201
    • An electronic-carrying module (640), for example for use with a seismic data acquisition cable (400), is disclosed. The preferred electronic-carrying module (640) includes, first, an electronics carrier (106) having access means (107) for providing an easy-to-reach access to wrap-around circuitry fitted inside a curved space (104a) within the electronics carrier (106). Second, a pair of rigid end-fittings (102) spaced apart axially by the electronics carrier (106) for connecting to a section of the seismic data acquisition cable (400). And third, an axial hole (100) formed in the electronics carrier (106) and the rigid end-fittings (102) defining the curved space (104a) between the axial hole (100), the access means (107) and the rigid end-fittings (102).
    • 公开了一种例如与地震数据采集电缆(400)一起使用的电子承载模块(640)。 优选的电子承载模块(640)首先包括具有存取装置(107)的电子载体(106),用于提供易于接近的环绕电路,该环绕电路装配在内部的弯曲空间(104a)内, 电子载体(106)。 第二,一对由电子载体(106)轴向隔开的刚性端部接头(102),用于连接到地震数据采集电缆(400)的一部分。 第三,形成在电子载体(106)中的轴向孔(100)和刚性端部配件(102),其在轴向孔(100),通道装置(107)和 刚性端接件(102)。
    • 2. 发明申请
    • Electronics-carrying module
    • 电子携带模块
    • US20050146984A1
    • 2005-07-07
    • US10502342
    • 2003-01-24
    • Paul LeeRobert Dowle
    • Paul LeeRobert Dowle
    • G01V1/20G01V1/38
    • G01V1/201
    • An electronic-carrying module (640), for example for use with a seismic data acquisition cable (400), is disclosed. The preferred electronic-carrying module (640) includes, first, an electronics carrier (106) having access means (107) for providing an easy-to-reach access to wrap-around circuitry fitted inside a curved space (104a) within the electronics carrier (106). Second, a pair of rigid end-fittings (102) spaced apart axially by the electronics carrier (106) for connecting to a section of the seismic data acquisition cable (400). And third, an axial hole (100) formed in the electronics carrier (106) and the rigid end-fittings (102) defining the curved space (104a) between the axial hole (100), the access means (107) and the rigid end-fittings (102).
    • 公开了一种例如与地震数据采集电缆(400)一起使用的电子承载模块(640)。 优选的电子承载模块(640)首先包括具有存取装置(107)的电子载体(106),用于提供易于接近的环绕电路,该环绕电路装配在内部的弯曲空间(104a)内, 电子载体(106)。 第二,一对由电子载体(106)轴向隔开的刚性端部接头(102),用于连接到地震数据采集电缆(400)的一部分。 第三,形成在电子载体(106)中的轴向孔(100)和刚性端部接头(102),其在轴向孔(100),接触装置(107)和 刚性端接件(102)。
    • 4. 发明授权
    • Compact broadband source and method
    • 紧凑的宽带源和方法
    • US09075166B2
    • 2015-07-07
    • US13468589
    • 2012-05-10
    • Thierry PayenRobert Dowle
    • Thierry PayenRobert Dowle
    • G01V1/38
    • G01V1/3861G01V1/137G01V1/3817
    • Method and marine acoustic source array for generating an acoustic wave in a body of water. The marine acoustic source array includes a first depth sub-array set of first acoustic source points configured to be provided at a first depth (z1), the first acoustic source points having different inline first locations along a longitudinal axis (X); and a second depth sub-array set of second acoustic source points configured to be provided at a second depth (z2), the second acoustic source points having different inline second locations along the longitudinal axis (X). The first locations do not coincide along the longitudinal axis (X) with any of the second locations.
    • 用于在水体中产生声波的方法和海洋声源阵列。 海洋声源阵列包括被配置为设置在第一深度(z1)处的第一声源点的第一深度子阵列组,所述第一声源点具有沿着纵向轴线(X)的不同的第一位置; 以及被配置为设置在第二深度(z2)处的第二声源点的第二深度子阵列组,所述第二声源点具有沿着所述纵向轴线(X)的不同的内联第二位置。 第一位置与纵轴(X)不同于任何第二位置。
    • 8. 发明申请
    • Method for deploying seafloor equipment
    • 部署海底设备的方法
    • US20050169713A1
    • 2005-08-04
    • US10986437
    • 2004-11-10
    • Francois LucRobert Dowle
    • Francois LucRobert Dowle
    • B63B35/03F16L1/00G01V1/38
    • G01V1/38
    • The present invention provides a method for deploying and retrieving seafloor equipment including the steps of: providing a conveying means (200) with a fixed end and a free end (201); releasing said conveying means (200) into a body of water (210) from a vessel (220) until said free end (201) reaches, or is proximate to, a seafloor (230) of said body of water (210); dragging said conveying means (200) behind said vessel (220) at a controllable speed; slidably attaching said equipment (240) including a recovery module (241) and stopping means (242) to said conveying means (200), wherein said equipment, said recovery module and said stopping means are secured one to another by a connector (244); sliding said equipment (240) to the free end (201) of the conveying means (200), said equipment (240) being fixed in position on the seafloor (230) by said stopping means (242) once said stopping means reaches the seafloor; activating said recovery module (241) so as to allow said equipment (240) to ascend from the seafloor (230) to a surface of the water; and retrieving said equipment (240) from the surface of the water. Preferably the conveying means (200) is in the form of a cable.
    • 本发明提供了一种用于部署和检索海底设备的方法,包括以下步骤:提供具有固定端和自由端(201)的输送装置(200); 将所述输送装置(200)从容器(220)释放到水(210)的主体中,直到所述自由端(201)到达或接近所述水体(210)的海底(230)为止; 以可控速度将所述输送装置(200)拖动在所述容器(220)之后; 将所述设备(240)可滑动地附接到所述输送装置(200)上,所述设备包括回收模块(241)和止动装置(242),其中所述设备,所述恢复模块和所述止动装置通过连接器(244)彼此固定, ; 将所述设备(240)滑动到所述输送装置(200)的自由端(201),一旦所述停止装置到达所述海底,则所述设备(240)通过所述停止装置(242)固定在所述停靠装置(242)上的适当位置 ; 启动所述恢复模块(241)以允许所述设备(240)从所述海底(230)上升到所述水的表面; 以及从所述水表面检索所述设备(240)。 优选地,输送装置(200)是电缆的形式。