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    • 4. 发明申请
    • METHOD AND DEVICE FOR SEPARATING SEISMIC SIGNALS FROM SEISMIC SOURCES
    • 从地震源分离地震信号的方法和装置
    • WO2013087871A2
    • 2013-06-20
    • PCT/EP2012/075611
    • 2012-12-14
    • CGGVERITAS SERVICES SA
    • DOWLE, Robert
    • G01V1/38
    • G01V1/3861
    • System and method for actuating first and second marine acoustic sources in a firing sequence, the firing sequence including at least a first actuation of the first source followed by a first actuation of the second source followed by a second actuation of the first source and a second actuation of the second source. The method includes towing the first source at a depth in water substantially equal to a depth of the second source; establishing a series of reference time instants; actuating the first source with a variable first time delay relative to the series of reference time instants; and actuating the second source with a variable second time delay relative to the series of reference time instants such that time intervals between consecutive activations of the first and second sources are also variable.
    • 用于在击发序列中致动第一和第二海洋声源的系统和方法,所述击发序列包括所述第一源的至少第一致动,随后是所述第二源的第一致动,接着是所述第一源的第二致动, 致动第二源。 该方法包括在基本上等于第二源的深度的水中的深度处牵引第一源; 建立一系列参考时间; 以相对于一系列参考时刻的可变的第一时间延迟致动第一源; 以及相对于一系列参考时刻以可变的第二时间延迟致动第二源,使得第一和第二源的连续激活之间的时间间隔也是可变的。
    • 7. 发明申请
    • METHOD FOR DEPLOYING SEAFLOOR EQUIPMENT
    • 用于部署海员设备的方法
    • WO2003096072A1
    • 2003-11-20
    • PCT/AU2003/000561
    • 2003-05-09
    • THALES UNDERWATER SYSTEMS PTY LIMITEDLUC, FrançoisDOWLE, Robert
    • LUC, FrançoisDOWLE, Robert
    • G01V1/38
    • G01V1/3852
    • 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)拖到所述容器(220)的后面; 将所述设备(240)可滑动地附接到所述传送装置(200)上,所述设备(240)包括恢复模块(241)和停止装置(242),其中所述设备,所述恢复模块和所述停止装置通过连接器(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。
    • 8. 发明申请
    • ELECTRONICS-CARRYING MODULE
    • 电子承载模块
    • WO2003062857A1
    • 2003-07-31
    • PCT/AU2003/000073
    • 2003-01-24
    • THALES UNDERWATER SYSTEMS PTY LIMITEDLEE, PaulDOWLE, Robert
    • LEE, PaulDOWLE, Robert
    • G01V1/20
    • 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)首先包括具有接近装置(107)的电子载体(106),用于提供易于接近的装配在电子装置内的弯曲空间(104a)内的环绕电路 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)和限定在轴向孔(100),进入装置(107)和刚性(108)之间的弯曲空间(104a)的刚性端部配件 端接件(102)。