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    • 2. 发明授权
    • Methods for gathering marine geophysical data
    • 收集海洋地球物理数据的方法
    • US08792297B2
    • 2014-07-29
    • US12803730
    • 2010-07-02
    • Øyvind HillesundStian Hegna
    • Øyvind HillesundStian Hegna
    • G01V1/38
    • G01V1/3826G01V1/3808
    • In a first embodiment the invention comprises a method for gathering geophysical data, including towing geophysical data gathering equipment behind a survey vessel in a body of water, said equipment including an array of sensor streamers extending behind said vessel, and determining a geodetic location of a streamer steering reference point at a forward end of the sensor streamers and a reference direction. At least one sensor streamer included in said array of sensor streamers is laterally deflected in response to the determined geodetic location of said streamer steering reference point and the determined reference direction.
    • 在第一实施例中,本发明包括一种用于收集地球物理数据的方法,包括在水体中拖动测量船后面的地球物理数据采集设备,所述设备包括延伸在所述船舶后面的传感器拖缆阵列,以及确定一个大地测量位置 传感器拖缆前端的拖缆转向参考点和参考方向。 响应于所确定的所述拖缆转向参考点的大地测量位置和确定的参考方向,包括在所述传感器拖缆阵列中的至少一个传感器拖缆被横向偏转。
    • 4. 发明申请
    • Methods for gathering marine geophysical data
    • 收集海洋地球物理数据的方法
    • US20120002502A1
    • 2012-01-05
    • US12803730
    • 2010-07-02
    • Øyvind HillesundStian Hegna
    • Øyvind HillesundStian Hegna
    • G01V1/38
    • G01V1/3826G01V1/3808
    • In a first embodiment the invention comprises a method for gathering geophysical data, including towing geophysical data gathering equipment behind a survey vessel in a body of water, said equipment including an array of sensor streamers extending behind said vessel, and determining a geodetic location of a streamer steering reference point at a forward end of the sensor streamers and a reference direction. At least one sensor streamer included in said array of sensor streamers is laterally deflected in response to the determined geodetic location of said streamer steering reference point and the determined reference direction.
    • 在第一实施例中,本发明包括一种用于收集地球物理数据的方法,包括在水体中拖动测量船后面的地球物理数据采集设备,所述设备包括延伸在所述船舶后面的传感器拖缆阵列,以及确定一个大地测量位置 传感器拖缆前端的拖缆转向参考点和参考方向。 响应于所确定的所述拖缆转向参考点的大地测量位置和确定的参考方向,包括在所述传感器拖缆阵列中的至少一个传感器拖缆被横向偏转。
    • 6. 发明授权
    • Combined electromagnetic and seismic acquisition system and method
    • 综合电磁和地震采集系统及方法
    • US08098542B2
    • 2012-01-17
    • US12319264
    • 2009-01-05
    • Øyvind HillesundNils Lunde
    • Øyvind HillesundNils Lunde
    • G01V1/38
    • G01V1/38G01V3/083G01V3/12Y02A90/344
    • A method for marine geophysical surveying according to one aspect of the invention includes towing at least one geophysical sensor streamer in a body of water. The streamer includes a plurality of spaced apart electromagnetic field receivers disposed at spaced apart locations along the streamer. The streamer also includes a plurality of seismic sensors disposed at spaced apart locations. The seismic sensors each include at least one pressure responsive receiver and at least one particle motion responsive receiver. At selected times, a seismic energy source is actuated in the water. Particle motion and pressure seismic signals, and electromagnetic field signals are detected at the respective receivers.
    • 根据本发明的一个方面的用于海洋地球物理测量的方法包括在水体中牵引至少一个地球物理传感器拖缆。 拖缆包括多个间隔开的电磁场接收器,沿着拖缆放置在间隔开的位置。 拖缆还包括设置在间隔开的位置处的多个地震传感器。 地震传感器各自包括至少一个压力响应接收器和至少一个粒子运动响应接收器。 在选定的时间,地震能源在水中被致动。 在各个接收器处检测到颗粒运动和压力地震信号以及电磁场信号。