会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • Transmitting Data through a Downhole Environment
    • 通过井下环境传输数据
    • US20060174702A1
    • 2006-08-10
    • US10906153
    • 2005-02-04
    • David HallJoe FoxTyson WildeJason Miller
    • David HallJoe FoxTyson WildeJason Miller
    • E21B49/00
    • E21B17/028E21B47/122H01R13/03
    • The invention is a system for transmitting data through downhole environments comprising a downhole network integrated into a downhole tool string. The downhole tool string comprises a plurality of downhole components. Each downhole component also comprises a conductor intermediate and operably connected to mating communication elements proximate the ends of the downhole component. The mating communication elements comprise magnetically conductive portions with different curie temperatures. The magnetically conductive portion may comprise segments or solid portions adapted to operate in the harsh downhole environments with temperatures ranging from 25 C to 275 C. Each downhole component is selected from the group consisting of drill pipes, drill collars, bottom hole assemblies, reamers, jars and/or production pipes.
    • 本发明是一种用于通过井下环境传输数据的系统,包括集成到井下工具串中的井下网络。 井下工具串包括多个井下部件。 每个井下部件还包括导体中间并且可操作地连接到靠近井下部件端部的配合连通元件。 配合通信元件包括具有不同居里温度的导磁部分。 导磁部分可以包括适于在温度范围为25℃至275℃的苛刻井下环境中操作的段或实心部分。每个井下部件选自钻杆,钻铤,井底组件,铰刀, 罐子和/或生产管道。
    • 4. 发明申请
    • Apparatus for Responding to an Anomalous Change in Downhole Pressure
    • 用于响应井下压力异常变化的装置
    • US20060033638A1
    • 2006-02-16
    • US10711796
    • 2004-10-06
    • David HallJoe FoxTyson WildeJonathan Barlow
    • David HallJoe FoxTyson WildeJonathan Barlow
    • G01V3/00
    • E21B33/06E21B21/08E21B44/00E21B47/06E21B47/122
    • A method of responding to an anomalous change in downhole pressure in a bore hole comprises detecting the anomalous change in downhole pressure, sending a signal along the segmented electromagnetic transmission path, receiving the signal, and performing a automated response. The anomalous change in downhole pressure is detected at a first location along a segmented electromagnetic transmission path, and the segmented electromagnetic transmission path is integrated into the tool string. The signal is received by at least one receiver in communication with the segmented electromagnetic transmission path. The automated response is performed along the tool string. Disclosed is an apparatus for responding to an anomalous change in downhole pressure in a downhole tool string, comprising a segmented electromagnetic transmission path connecting one or more receivers and at least one pressure sensor.
    • 响应钻孔中井下压力的异常变化的方法包括检测井下压力的异常变化,沿着分段电磁传输路径发送信号,接收信号并执行自动响应。 在沿着分段电磁传输路径的第一位置处检测井下压力的异常变化,并且分段的电磁传输路径被集成到工具串中。 信号由与分段电磁传输路径通信的至少一个接收机接收。 自动响应沿工具串执行。 公开了一种用于响应井下工具串中的井下压力的异常变化的装置,包括连接一个或多个接收器和至少一个压力传感器的分段电磁传输路径。
    • 7. 发明授权
    • Apparatus for responding to an anomalous change in downhole pressure
    • 用于响应井下压力异常变化的装置
    • US07696900B2
    • 2010-04-13
    • US12030444
    • 2008-02-13
    • David R. HallJoe FoxTyson WildeJonathan S. Barlow
    • David R. HallJoe FoxTyson WildeJonathan S. Barlow
    • G01V3/00
    • E21B33/06E21B21/08E21B44/00E21B47/06E21B47/122
    • A method of responding to an anomalous change in downhole pressure in a bore hole comprises detecting the anomalous change in downhole pressure, sending a signal along the segmented electromagnetic transmission path, receiving the signal, and performing a automated response. The anomalous change in downhole pressure is detected at a first location along a segmented electromagnetic transmission path, and the segmented electromagnetic transmission path is integrated into the tool string. The signal is received by at least one receiver in communication with the segmented electromagnetic transmission path. The automated response is performed along the tool string. Disclosed is an apparatus for responding to an anomalous change in downhole pressure in a downhole tool string, comprising a segmented electromagnetic transmission path connecting one or more receivers and at least one pressure sensor.
    • 响应钻孔中井下压力的异常变化的方法包括检测井下压力的异常变化,沿着分段电磁传输路径发送信号,接收信号并执行自动响应。 在沿着分段电磁传输路径的第一位置处检测井下压力的异常变化,并且分段的电磁传输路径被集成到工具串中。 信号由与分段电磁传输路径通信的至少一个接收机接收。 自动响应沿工具串执行。 公开了一种用于响应井下工具串中的井下压力的异常变化的装置,包括连接一个或多个接收器和至少一个压力传感器的分段电磁传输路径。
    • 8. 发明授权
    • Transmitting data through a downhole environment
    • 通过井下环境传输数据
    • US07298287B2
    • 2007-11-20
    • US10906153
    • 2005-02-04
    • David R. HallJoe FoxTyson J. WildeJason Miller
    • David R. HallJoe FoxTyson J. WildeJason Miller
    • G01V3/00
    • E21B17/028E21B47/122H01R13/03
    • The invention is a system for transmitting data through downhole environments comprising a downhole network integrated into a downhole tool string. The downhole tool string comprises a plurality of downhole components. Each downhole component also comprises a conductor intermediate and operably connected to mating communication elements proximate the ends of the downhole component. The mating communication elements comprise magnetically conductive portions with different curie temperatures. The magnetically conductive portion may comprise segments or solid portions adapted to operate in the harsh downhole environments with temperatures ranging from 25 C to 275 C. Each downhole component is selected from the group consisting of drill pipes, drill collars, bottom hole assemblies, reamers, jars and/or production pipes.
    • 本发明是一种用于通过井下环境传输数据的系统,包括集成到井下工具串中的井下网络。 井下工具串包括多个井下部件。 每个井下部件还包括导体中间并且可操作地连接到靠近井下部件端部的配合连通元件。 配合通信元件包括具有不同居里温度的导磁部分。 导磁部分可以包括适于在温度范围为25℃至275℃的苛刻井下环境中操作的段或实心部分。每个井下部件选自钻杆,钻铤,井底组件,铰刀, 罐子和/或生产管道。
    • 10. 发明申请
    • High-speed, Downhole, Cross Well Measurement System
    • 高速,井下,十字井测量系统
    • US20060221768A1
    • 2006-10-05
    • US11382324
    • 2006-05-09
    • David HallJoe FoxChristopher Durrand
    • David HallJoe FoxChristopher Durrand
    • H04H9/00
    • G01V1/40
    • In one aspect of the invention, a high-speed measurement system has a first and a second well bore. A first and second plurality of network nodes is integrated into and spaced at intervals along the first and second well bore, respectively. A communications channel connects each plurality of network nodes forming a first and second downhole network. A signal source is in communication with the first downhole network and a signal receiver is in communication with the second downhole network; and a common clock source is in communication with both the signal source and the signal receiver over the first and second downhole networks, respectively. The signal source and signal receiver are synchronized with the clock source and the signal source is adapted to send a signal to the signal receiver through a subterranean formation.
    • 在本发明的一个方面,高速测量系统具有第一和第二井眼。 第一和第二多个网络节点分别集成在第一和第二井眼之间并且间隔开。 通信信道连接形成第一和第二井下网络的每个多个网络节点。 信号源与第一井下网络通信,信号接收器与第二井下网络通信; 并且公共时钟源分别在第一和第二井下网络上与信号源和信号接收器通信。 信号源和信号接收器与时钟源同步,并且信号源适于通过地下地层向信号接收器发送信号。