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    • 1. 发明申请
    • Seismic acquisition system
    • 地震采集系统
    • US20050207277A1
    • 2005-09-22
    • US10804669
    • 2004-03-19
    • Darrell GordyBruce CornishDenis SchmittCarl Robbins
    • Darrell GordyBruce CornishDenis SchmittCarl Robbins
    • G01V1/00G01V1/38
    • G01V1/38
    • A seismic acquisition system comprising a remote-controlled buoy for conducting seismic acquisition operations. The buoy comprises an operating system for operating a seismic wave production device on the buoy, a placement system, a communications system, and dynamic position locating system. The seismic acquisition system also comprises a remote control system for controlling the buoy systems. The seismic acquisition system also comprises receivers for receiving the seismic wave and generating a data signal indicative of the received seismic wave. The seismic acquisition system operates by controlling the placement system with the remote control system to position the buoy and then controlling the operating system with the remote control system to produce a seismic wave from the seismic wave production device. The receivers then receive the seismic wave and generate a data signal indicative of the seismic wave. The time of producing the seismic wave as well as the position of the buoy at the time of production are then analyzed with the data signal by a data processor.
    • 一种地震采集系统,包括用于进行地震采集操作的遥控浮标。 浮标包括用于在浮标上操作地震波生产装置的操作系统,放置系统,通信系统和动态位置定位系统。 地震采集系统还包括用于控制浮标系统的遥控系统。 地震采集系统还包括用于接收地震波并产生指​​示接收的地震波的数据信号的接收机。 地震采集系统通过利用遥控系统控制放置系统来定位浮标,然后利用遥控系统控制操作系统,从地震波生产装置产生地震波。 然后,接收器接收地震波并产生指​​示地震波的数据信号。 然后用数据处理器用数据信号分析产生地震波的时间以及浮标在生产时的位置。
    • 3. 发明申请
    • Adaptive equalization of downhole acoustic receivers
    • 井下声学接收机的自适应均衡
    • US20070156359A1
    • 2007-07-05
    • US11323674
    • 2005-12-30
    • Georgios VarsamisJoakim BlanchArthur ChengCalvin KesslerDenis SchmittBatakrishna Mandal
    • Georgios VarsamisJoakim BlanchArthur ChengCalvin KesslerDenis SchmittBatakrishna Mandal
    • G01R29/00
    • G01V1/44
    • The present invention relates generally to a method and apparatus utilized in hydrocarbon exploration. More specifically, the present invention relates to the utilization of acoustic sources and receivers to determine acoustic properties of geologic formations as a logging tool traverses them, be it a wireline logging tool and/or a logging while drilling (LWD) tool. More particularly, the present invention is directed to methods of, and apparatus for, adaptive equalization of receivers to reduce and/or substantially eliminate sensitivity mismatch. A method is provided, the method comprising detecting arrival times of a first wave at each of a plurality of receivers, determining a first place in a well when the arrival times of the first wave are substantially the same at each of the plurality of receivers, and estimating effective receiver sensitivities and equalization factors for each of the plurality of receivers using a Stoneley wave amplitude received by the plurality of receivers at the first place in the well. The method also comprises correcting amplitudes of a second wave received by the plurality of receivers using the estimated effective receiver sensitivities and equalization factors for each of the plurality of receivers.
    • 本发明一般涉及在烃勘探中使用的方法和装置。 更具体地说,本发明涉及使用声源和接收器来确定测井工具横穿它们的地质构造的声学特性,无论是电缆测井工具和/或钻井测井(LWD)工具。 更具体地,本发明涉及用于减少和/或基本消除灵敏度不匹配的接收机的自适应均衡的方法和装置。 提供了一种方法,所述方法包括:在多个接收器中的每一个处检测第一波的到达时间,当所述第一波的到达时间在所述多个接收机中的每一个处基本相同时,确定井中的第一位置, 以及使用由所述井中的所述第一位置处的所述多个接收器接收的斯通利波振幅来估计所述多个接收机中的每一个的有效接收机灵敏度和均衡因子。 该方法还包括使用针对多个接收机中的每一个的所估计的有效接收机灵敏度和均衡因子校正由多个接收机接收的第二波的振幅。