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    • 1. 发明申请
    • GALVANIC DEGRADABLE DOWNHOLE TOOLS COMPRISING DOPED ALUMINUM ALLOYS
    • 包含掺杂铝合金的电弧可降解井下工具
    • WO2017135934A1
    • 2017-08-10
    • PCT/US2016/016195
    • 2016-02-02
    • HALLIBURTON ENERGY SERVICES, INC.
    • FRIPP, Michael LinleyWALTON, Zachary William
    • E21B33/12E21B23/06C22C21/00
    • E21B33/128
    • Degradable downhole tools that include a doped aluminum alloy may degrade via a galvanic mechanism. More specifically, such a degradable downhole tool may comprise at least one component of the downhole tool made of a doped aluminum alloy that at least partially degrades by micro-galvanic corrosion in the presence of water having a salinity of greater than about 10 ppm, wherein the doped aluminum alloy comprises aluminum, 0.05% to about 25% dopant by weight of the doped aluminum alloy, less than 0.5% gallium by weight of the doped aluminum alloy, and less than 0.5% mercury by weight of the doped aluminum alloy, and wherein the dopant is selected from the group consisting of iron, copper, nickel, tin, chromium, silver, gold, palladium, carbon, and any combination thereof.
    • 包含掺杂铝合金的可降解井下工具可能通过电流机制降解。 更具体地,这种可降解的井下工具可以包括由掺杂铝合金制成的井下工具的至少一个部件,所述部件在盐度大于约10ppm的水存在下通过微电流腐蚀至少部分地降解,其中 掺杂铝合金包含铝,掺杂铝合金的0.05重量%至约25重量%掺杂物,掺杂铝合金的重量的小于0.5重量%的镓和重量的掺杂铝合金的小于0.5重量%的汞,以及 其中掺杂剂选自铁,铜,镍,锡,铬,银,金,钯,碳及其任何组合。
    • 3. 发明申请
    • SUBTERRANEAN FORMATION OPERATIONS USING DEGRADABLE WELLBORE ISOLATION DEVICES
    • 使用可降解的井筒隔离装置的地下室形成操作
    • WO2016032761A1
    • 2016-03-03
    • PCT/US2015/044993
    • 2015-08-13
    • HALLIBURTON ENERGY SERVICES, INC.
    • FRIPP, Michael LinleyWALTON, Zachary William
    • E21B33/12E21B34/06E21B33/128
    • E21B33/1208C22C23/02C22C23/04E21B33/12E21B33/1293
    • Methods including introducing a frac plug into a wellbore in a subterranean formation, the frac plug comprising at least a mandrel, slips, and a packer element, wherein at least a portion of the mandrel and/or the slips is composed of a degradable alloy selected from the group consisting of a magnesium alloy, an aluminum alloy, and any combination thereof. The wellbore may be a cased wellbore or an open-hole wellbore, and wherein the slips are frictionally engaged with the casing string or the wellbore wall and the packer element is compressed against the casing or the wellbore wall to set the frac plug. One or more perforations is created within the formation and the formation is hydraulically fractured. The frac plug is at least partially degraded upon contact with an electrolyte in the wellbore before or after beginning production of a hydrocarbon.
    • 方法包括将压裂塞塞引入地下地层中的井筒中,所述压裂塞至少包括心轴,滑移体和封隔器元件,其中心轴和/或滑移体的至少一部分由选择的可降解合金组成 由镁合金,铝合金及其任何组合组成。 井筒可以是套管井筒或露天井筒,并且其中滑块与套管柱或井筒壁摩擦接合,并且封隔器元件被压靠在壳体或井筒壁上以设置压裂塞。 在地层内产生一个或多个穿孔,并且地层被水力断裂。 在开始生产烃之前或之后,压裂塞在与井眼中的电解液接触时至少部分地降解。
    • 9. 发明申请
    • ELIMINATION OF PERFORATION PROCESS IN PLUG AND PERF WITH DOWNHOLE ELECTRONIC SLEEVES
    • 井下电子套管消除钻孔和塞孔钻孔过程
    • WO2018013131A1
    • 2018-01-18
    • PCT/US2016/042468
    • 2016-07-15
    • HALLIBURTON ENERGY SERVICES, INC.
    • WALTON, Zachary WilliamFRIPP, Michael LinleyMERRON, Matthew James
    • E21B43/26E21B43/17E21B23/06E21B33/12E21B17/00
    • A method includes positioning a completion assembly in a wellbore penetrating a subterranean formation and conveying a frac plug through the completion assembly. The completion assembly may provide a fracturing assembly. The method further includes detecting a wireless signal provided by the frac plug with a sensor included in the fracturing assembly, actuating a sliding sleeve of the fracturing assembly based on detection of the wireless signal and thereby moving the sliding sleeve to expose one or more flow ports, setting the frac plug in the wellbore downhole from the fracturing assembly, conveying a wellbore projectile through the completion assembly, receiving the wellbore projectile with the frac plug, and thereby sealing the wellbore at the frac plug, and injecting a fluid under pressure into the subterranean formation via the one or more flow ports.
    • 一种方法包括将完井组件定位在穿透地下地层的井筒中并且将压裂塞通过完井组件输送。 完井组件可以提供压裂组件。 该方法还包括利用包括在压裂组件中的传感器检测由压裂塞提供的无线信号,基于检测到无线信号来致动压裂组件的滑动套筒,并且由此移动滑动套筒以暴露一​​个或多个流动端口 ,将井筒中的压裂塞置于压裂组件的井下,将井筒射弹输送穿过完井组件,用压裂塞接收井筒射弹,从而将井筒密封在压裂塞处,并将压力流体注入 地下地层通过一个或多个流动端口。