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    • 5. 发明申请
    • FRACTURING A STRESS-ALTERED SUBTERRANEAN FORMATION
    • 破裂变形的地下室形成
    • WO2011107732A2
    • 2011-09-09
    • PCT/GB2011/000277
    • 2011-03-01
    • HALLIBURTON ENERGY SERVICES, INC.DUSTERHOFT, Ronald G.EAST, Loyd E.SOLIMAN, Mohamed Y.TURNER, Craig Robert
    • DUSTERHOFT, Ronald G.EAST, Loyd E.SOLIMAN, Mohamed Y.
    • E21B43/26
    • E21B43/26E21B43/114
    • A well bore in a subterranean formation includes a signaling subsystem communicably coupled to injection tools installed in the well bore. Each injection tool controls a flow of fluid into an interval of the formation based on a state of the injection tool. Stresses in the subterranean formation are altered by creating fractures in the formation. Control signals are sent from the well bore surface through the signaling subsystem to the injection tools to modify the states of one or more of the injection tools. Fluid is injected into the stress-altered subterranean formation through the injection tools to create a fracture network in the subterranean formation. In some implementations, the state of each injection tool can be selectively and repeatedly manipulated based on signals transmitted from the well bore surface, hi some implementations, stresses are modified and/or the fracture network is created along a substantial portion and/or the entire length of a horizontal well bore.
    • 地层中的井眼包括可通信地耦合到安装在井眼中的注射工具的信号子系统。 每个注射工具基于注射工具的状态控制流体流入地层的间隔。 在地层中的应力通过在地层中产生裂缝而改变。 控制信号从井眼表面通过信号子系统发送到喷射工具,以修改一个或多个喷射工具的状态。 通过注射工具将流体注入应力改变的地下地层,以在地层中产生断裂网络。 在一些实施方案中,可以基于从井眼表面传输的信号来选择性地和重复地操纵每个注射工具的状态。在一些实施方式中,应力被修改和/或沿着实质部分和/或整个部分产生断裂网络 水平井孔长度。
    • 10. 发明申请
    • METHOD FOR IMPROVING WATERFLOOD PERFORMANCE USING BARRIER FRACTURES AND INFLOW CONTROL DEVICES
    • 使用阻挡裂缝和流入控制装置提高水体流动性的方法
    • WO2011020998A2
    • 2011-02-24
    • PCT/GB2010001557
    • 2010-08-17
    • HALLIBURTON ENERGY SERV INCSIERRA LEOPOLDOEAST LOYD ESOLIMAN MOHAMED YCURTIS PHILIP ANTHONY
    • SIERRA LEOPOLDOEAST LOYD ESOLIMAN MOHAMED Y
    • E21B43/16
    • E21B43/16E21B43/12E21B43/305
    • The present invention is directed to a method of hydrocarbon production from a hydrocarbon reservoir. The method includes providing a substantially horizontal wellbore having at least one productive interval within a hydrocarbon reservoir and forming at least one non- conductive transverse fracture in the reservoir along the substantially horizontal wellbore. An injection well is also provided. A fluid is injected into the reservoir through the injection well to displace hydrocarbons within the reservoir toward a production portion of the substantially horizontal wellbore. Hydrocarbons are drained from the reservoir into at least one production interval of the substantially horizontal wellbore. Fluid production from the at least one production interval into the substantially horizontal wellbore flows through an inflow control device that can restrict the fluid flow. A non-conductive transverse fracture can form a barrier within the reservoir to divert injected fluids to increase sweep efficiency and reduce the influx of injected fluids into the production interval.
    • 本发明涉及一种从烃储层生产烃的方法。 该方法包括提供在烃储层内具有至少一个生产层段的基本上水平的井眼,并且沿着基本上水平的井筒在储层中形成至少一个不导电的横向裂缝。 还提供注入井。 流体通过注入井注入到储层中,以将储层内的碳氢化合物朝着基本上水平的井眼的生产部分移位。 将碳氢化合物从储层排出至大致水平井筒的至少一个生产层段中。 从至少一个生产层段到基本上水平的井眼的流体产量流过可限制流体流动的流入控制装置。 不导电的横向裂缝可在储层内形成屏障,以转移注入的流体以增加吹扫效率并减少注入流体流入生产层段。