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    • 3. 发明申请
    • WIRELESS AUXILIARY MONITORING AND CONTROL SYSTEM FOR AN UNDERWATER INSTALLATION
    • 用于水下安装的无线辅助监测和控制系统
    • WO2011114152A2
    • 2011-09-22
    • PCT/GB2011050520
    • 2011-03-16
    • WFS TECHNOLOGIES LTDJAFFREY ANDREWHYLAND BRENDAN PETER
    • JAFFREY ANDREWHYLAND BRENDAN PETER
    • E21B47/00E21B47/12
    • E21B47/0001E21B43/01E21B47/122
    • The present invention provides a wireless auxiliary system for monitoring and control of an underwater installation. The auxiliary system of the present invention sends data and control signals between an underwater installation - for example, a lower stack (26) in a hydrocarbon drilling or production facility - and an associated riser assembly (23). Data is collected by sensor network (208A, 208B) and is transmitted from a first transceiver (201) to a second transceiver (203) by electromagnetic signals. First transceiver (201) is powered by a local power supply (205). To conserve power consumption, the first transceiver is designed to become active for a short time and then to switch to an inactive mode. For example, wireless data transfer may occur after the detachment or just prior to the reattachment of riser assembly (23) to the underwater installation. Wireless data transfer may also occur on receipt of a handshaking signal from second transceiver (203). Thus, the system of the present invention is capable of providing soft shut-down mode for the underwater installation on detachment of riser assembly (23) and can also safeguard potential risks of reattaching riser (23) when the underwater installation in an unknown state.
    • 本发明提供一种用于监测和控制水下装置的无线辅助系统。 本发明的辅助系统在水下装置(例如,烃钻井或生产设备中的下层堆垛26)和相关的提升管组件(23)之间发送数据和控制信号。 数据由传感器网络(208A,208B)收集,并且通过电磁信号从第一收发器(201)发送到第二收发器(203)。 第一收发器(201)由本地电源(205)供电。 为了节省功耗,第一个收发器被设计为在短时间内变为活动状态,然后切换到非活动模式。 例如,无线数据传送可以在拆卸之后或恰好在提升器组件(23)重新连接到水下安装之前发生。 无线数据传输也可能在从第二收发器(203)接收到握手信号时发生。 因此,本发明的系统能够在提升器组件(23)的拆卸时提供用于水下安装的软关闭模式,并且还可以在未知状态的水下安装时保护重新安装提升管(23)的潜在风险。
    • 5. 发明申请
    • IMPROVED SUBSEA INSTALLATION DEPLOYMENT
    • 改进的SUBSEA安装部署
    • WO2014068313A3
    • 2014-11-27
    • PCT/GB2013052835
    • 2013-10-30
    • WFS TECHNOLOGIES LTD
    • HYLAND BRENDAN PETERMACLEAN GRANT
    • E21B43/01E21B41/04E21B47/00E21B47/12
    • E21B43/01E21B41/04E21B47/0001E21B47/122
    • A subsea deployment system comprising a deployment surface (12), the deployment surface being at a predetermined position; a subsea installation component (16), the subsea installation component being deployed from above water to land relative to the deployment surface, and a deployment mechanism (26), the deployment mechanism being detachably engaged with the subsea installation component during deployment, the subsea installation component and the deployment system each having a wireless transceiver(36,38) for transmission of signals between the subsea installation component and the deployment mechanism and wherein upon the subsea installation component landing relative to the deployment surface, data is transmitted between the transceivers such that the deployment system is actuated to detach from the subsea installation component.
    • 一种包括展开表面(12)的海底展开系统,所述展开表面处于预定位置; 海底安装部件(16),所述海底安装部件从水面上相对于所述部署表面部署;以及展开机构(26),所述展开机构在展开期间可拆卸地与所述海底安装部件接合,所述海底安装 组件和部署系统各自具有用于在海底安装部件和部署机构之间传输信号的无线收发器(36,38),并且其中在海底安装部件相对于部署表面着陆时,在收发器之间传送数据,使得 启动部署系统以从海底安装部件脱离。
    • 6. 发明申请
    • COMMUNICATIONS SYSTEM
    • 通信系统
    • WO2014167330A3
    • 2014-12-24
    • PCT/GB2014051113
    • 2014-04-09
    • WFS TECHNOLOGIES LTD
    • HYLAND BRENDAN PETERROULSTON JOHNMACLEAN GRANTMCKENZIE GORDON
    • G01V3/34E21B47/12
    • E21B47/122G01V3/34
    • A communications system for deployment within a subsurface hydrocarbon production system, the communications system comprising at least a section of production pipeline having an external pipe unit, and an internal pipe unit located within and coaxial with the exterior pipe unit creating a void therebetween operable to receive fluid, a first communication unit disposed at a first location on the internal pipe, operable to transmit an electromagnetic data signal, and a second communication unit located at a second location, remote to the first location, on the internal pipe, operable to receive an electromagnetic data signal transmitted by the first communication system through the fluid, internal pipe and external pipe.
    • 一种用于在地下碳氢化合物生产系统内部署的通信系统,所述通信系统包括具有外部管道单元的至少一段生产管道以及位于所述外部管道单元内并与所述外部管道单元同轴的内部管道单元, 流体;第一通信单元,所述第一通信单元设置在所述内部管道上的第一位置处,所述第一通信单元可操作以传输电磁数据信号;以及第二通信单元,位于所述内部管道上远离所述第一位置的第二位置处, 由第一通信系统通过流体,内部管道和外部管道传输的电磁数据信号。
    • 7. 发明申请
    • IMPROVED SUBSEA INSTALLATION DEPLOYMENT
    • 改进的SUBSEA安装部署
    • WO2013114138A3
    • 2014-07-10
    • PCT/GB2013050243
    • 2013-02-01
    • WFS TECHNOLOGIES LTD
    • CROWTHER RICHARD IANHYLAND BRENDAN PETER
    • E21B41/00E21B43/01
    • E21B43/01E21B41/0007E21B47/0001E21B47/122G01S7/003
    • A subsea deployment system comprising a first part (12) of a subsea installation, the first part being at a fixed location relative to the sea bed (14); a second part (16) of a subsea installation, the second part being deployed from a further location to land relative to the first part; an underwater vehicle (90), the vehicle being located in proximity to the first part; the first part and the vehicle each having a wireless transceiver for transmission of signals between them; and wherein at least one sensor is arranged on the first part to assist in guiding the second part onto the first part and data from the at least one sensor is transmitted via the wireless transceivers to the vehicle.
    • 一种海底展开系统,包括海底装置的第一部分(12),所述第一部分位于相对于所述海床(14)的固定位置; 海底安装的第二部分(16),第二部分从另一位置相对于第一部分展开; 水下飞行器(90),所述车辆位于所述第一部分附近; 第一部分和车辆都具有用于在它们之间传输信号的无线收发器; 并且其中至少一个传感器布置在第一部分上以辅助将第二部分引导到第一部分上,并且来自至少一个传感器的数据经由无线收发器传输到车辆。
    • 8. 发明申请
    • IMPROVED SUBSEA INSTALLATION DEPLOYMENT
    • 改进的SUBSEA安装部署
    • WO2014068313A2
    • 2014-05-08
    • PCT/GB2013052835
    • 2013-10-30
    • WFS TECHNOLOGIES LTD
    • HYLAND BRENDAN PETERMACLEAN GRANT
    • E21B43/01E21B41/04E21B47/0001E21B47/122
    • A subsea deployment system comprising a deployment surface, the deployment surface being at a predetermined position; a subsea installation component, the subsea installation component being deployed from above water to land relative to the deployment surface, and a deployment mechanism, the deployment mechanism being detachably engaged with the subsea installation component during deployment, the subsea installation component and the deployment system each having a wireless transceiver for transmission of signals between the subsea installation component and the deployment mechanism and wherein upon the subsea installation component landing relative to the deployment surface, data is transmitted between the transceivers such that the deployment system is actuated to detach from the subsea installation component.
    • 一种海底展开系统,包括展开面,所述展开面位于预定位置; 海底安装部件,从上部水面部署到相对于部署面的海底安装部件;以及展开机构,所述展开机构在展开期间可拆卸地与所述海底安装部件接合,所述海底安装部件和所述部署系统各自 具有用于在海底安装部件和部署机构之间传输信号的无线收发器,并且其中在海底安装部件相对于部署表面着陆时,在收发器之间传输数据,使得部署系统被致动以脱离海底安装 零件。