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    • 2. 发明申请
    • System and Method for Monitoring Fluid Flow in a Wellbore Using Acoustic Telemetry
    • 使用声学遥测监测井筒中流体流动的系统和方法
    • US20160208605A1
    • 2016-07-21
    • US14876935
    • 2015-10-07
    • Timothy I. MorrowMichael C. RomerMark M. Disko
    • Timothy I. MorrowMichael C. RomerMark M. Disko
    • E21B47/16E21B47/00E21B43/12E21B47/06
    • E21B43/122E21B47/10E21B47/14
    • An electro-acoustic system for downhole telemetry is provided herein. The system employs a series of communications nodes spaced along a string of production tubing within a wellbore. The nodes allow for wireless communication between transceivers residing within the communications nodes and a receiver at the surface. More specifically, the transceivers provide for node-to-node communication up a wellbore at high data transmission rates for data indicative of fluid flow within the production tubing adjacent gas lift valves. A method of monitoring the flow of fluid gas lift valves is also provided herein. The method uses a plurality of data transmission nodes situated along the production tubing which send signals to a receiver at the surface. The signals are then analyzed to determine gas lift valve operation and fluid flow data.
    • 本文提供了一种用于井下遥测的电声系统。 该系统采用沿着井筒内的一串生产管道间隔开的一系列通信节点。 节点允许驻留在通信节点内的收发器与表面的接收器之间进行无线通信。 更具体地,收发器为节点间节点提供高数据传输速率的井眼通信,用于指示生产管道中相邻气体提升阀内的流体流动的数据。 本文还提供了一种监测流体气体提升阀流量的方法。 该方法使用沿着生产管道定位的多个数据传输节点,其将信号发送到表面处的接收机。 然后分析信号以确定气举阀操作和流体流动数据。
    • 5. 发明申请
    • Apparatus and Method for Relieving Annular Pressure in a Wellbore Using a Wireless Sensor Network
    • 使用无线传感器网络减轻井筒环形压力的装置和方法
    • US20150285065A1
    • 2015-10-08
    • US14432970
    • 2013-12-18
    • David A. HowellTimothy I. MorrowMark M. DiskoMax Deffenbaugh
    • David A. HowellTimothy I. MorrowMark M. DiskoMax Deffenbaugh
    • E21B47/16
    • E21B47/16E21B47/0005E21B47/011
    • An electro-acoustic system for downhole telemetry is provided herein. The system employs a series of communications nodes spaced along a string of casing within a wellbore. The nodes are placed within the annular region surrounding the joints of casing within the well-bore. The nodes allow for wireless communication between transceivers residing within the communications nodes and a topside communications node at the wellhead. More specifically, the transceivers provide for node-to-node communication up a wellbore at high data transmission rates for data indicative of a parameter within an annular region behind the string of casing. A method of evaluating a parameter within an annular region along a cased-hole wellbore is also provided herein. The method uses a plurality of data transmission nodes situated along the casing string which send signals to a receiver at the surface. The signals are then analyzed.
    • 本文提供了一种用于井下遥测的电声系统。 该系统采用沿着井眼内的一串套管间隔开的一系列通信节点。 节点放置在围绕井眼内的套管接头的环形区域内。 这些节点允许驻留在通信节点内的收发器与井口的顶层通信节点之间的无线通信。 更具体地,收发器为高数据传输速率的节点间节点向井上通信提供表示在套管串之后的环形区域内的参数的数据。 本文还提供了沿着套管井井筒在环形区域内评估参数的方法。 该方法使用沿着套管串定位的多个数据传输节点,其向表面的接收机发送信号。 然后分析信号。