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    • 5. 发明申请
    • SMART FLUID COMPLETIONS, ISOLATIONS, AND SAFETY SYSTEMS
    • 智能流体完整,隔离和安全系统
    • WO2015099712A1
    • 2015-07-02
    • PCT/US2013/077695
    • 2013-12-24
    • HALLIBURTON ENERGY SERVICES, INC.
    • MCMILLON, Christopher MichaelNEELY, Robert MitchellHAAKE, Russell Stephen
    • E21B43/16E21B43/26
    • E21B33/10E21B33/03E21B33/12E21B33/1208E21B41/0021E21B47/06
    • Systems and related methods are disclosed for applying electrorheological fluids in hydro-carbon-producing environments. The systems include a fluid-retaining member having a conductive inner surface and a conductive outer surface. The fluid-retaining member retains a smart fluid. The systems also include a controller that is electrically coupled to a power source and at least one of the conductive inner surface and conductive outer surface of the fluid-retaining member to actuate an electric field or magnetic field across fluid-retaining member. Actuation of the electric field or magnetic field results in a near instantaneous increase in the viscosity of the fluid, causing the fluid to solidify, nearly solidify, gel or otherwise increase in viscosity. The actuated fluid retaining member may be used as a well casing, an isolator, a blowout inhibitor, or in a well insulation system to absorb energy in the event of an explosion.
    • 公开了用于在水力发电环境中应用电流变流体的系统和相关方法。 该系统包括具有导电内表面和导电外表面的流体保持构件。 流体保持构件保持智能流体。 这些系统还包括电耦合到电源和流体保持构件的导电内表面和导电外表面中的至少一个的控制器,以驱动横跨流体保持构件的电场或磁场。 电场或磁场的致动导致流体的粘度几乎瞬间增加,导致流体固化,几乎固化,凝胶化或以其它方式增加粘度。 致动流体保持构件可以用作井套管,隔离器,防喷器,或用于在发生爆炸的情况下吸收能量的井绝缘系统。
    • 6. 发明申请
    • DOWNHOLE SUPERCAPACITOR DEVICE
    • 卧式超级设备
    • WO2014107151A1
    • 2014-07-10
    • PCT/US2013/020100
    • 2013-01-03
    • HALLIBURTON ENERGY SERVICES, INC.
    • MCMILLON, Christopher MichaelNEELY, Robert MitchellWERKHEISER, Gregory Thomas
    • E21B47/125E21B47/007E21B47/01
    • E21B29/02E21B29/06E21B41/0085E21B43/1185
    • Certain aspects and features of the present invention are directed to a supercapacitor device that can be disposed in a wellbore through a fluid-producing formation. The supercapacitor device can include a body that can be disposed in the wellbore, a supercapacitor disposed in the body, at least two terminals disposed at least partially outside the body, and an actuation mechanism. The supercapacitor stores energy. The terminals can be electrically connected with the supercapacitor. An electrical connection between the supercapacitor and the terminals can cause the energy to be discharged from the supercapacitor in response to a conductive material providing an electrical path between the at least two terminals. The actuation mechanism can selectively prevent a deployment of the supercapacitor device in the wellbore from causing a discharge of the energy from the supercapacitor.
    • 本发明的某些方面和特征涉及可通过流体产生层布置在井眼中的超级电容器装置。 超级电容器装置可以包括可以设置在井眼中的主体,设置在主体中的超级电容器,至少部分地设置在主体外部的至少两个端子和致动机构。 超级电容器储存能量。 端子可以与超级电容器电连接。 超级电容器和端子之间的电连接可以响应于在至少两个端子之间提供电路径的导电材料而使能量从超级电容器放电。 致动机构可以选择性地防止超级电容器装置在井眼中的展开而引起来自超级电容器的能量的放电。