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    • 3. 发明授权
    • Methods for storing carbon dioxide compositions in subterranean geological formations
    • 在地下地质构造中储存二氧化碳组合物的方法
    • US09194215B2
    • 2015-11-24
    • US13876764
    • 2011-09-28
    • Lars HøierBamshad Nazarian
    • Lars HøierBamshad Nazarian
    • E21B41/00E21B43/16
    • E21B41/005E21B41/0064E21B43/164Y02C10/14Y02P90/70
    • A method and arrangement are proposed for introducing a CO2 composition into a subterranean geological formation for storage of CO2 therein. The CO2 composition is initially injected into the formation using a first set of injection parameters at which the CO2 composition is a supercritical fluid having first viscosity and density values. The injection parameters are then modified such that the CO2 composition is injected into the formation using at least one second set of injection parameters at which the CO2 composition is a supercritical fluid having second viscosity and density values that are different from said first viscosity and density values, wherein said injection parameters include the injection temperature, injection pressure and hydrocarbon content of the CO2 composition.
    • 提出了一种方法和装置,用于将CO 2组合物引入到地下地质层中以便在其中储存二氧化碳。 首先使用第一组注入参数将CO2组合物注入到地层中,其中CO 2组成是具有第一粘度和密度值的超临界流体。 然后修改注入参数,使得使用至少一个第二组注入参数将CO 2组合物注入地层,其中CO 2组合物是具有不同于所述第一粘度和密度值的第二粘度和密度值的超临界流体 其中所述注射参数包括注射温度,注射压力和CO 2组成的烃含量。
    • 6. 发明授权
    • Assembly and method for transient and continuous testing of an open portion of a well bore
    • 用于井眼开放部分的瞬时和连续测试的装配和方法
    • US08528394B2
    • 2013-09-10
    • US12526352
    • 2008-02-14
    • Kåre Otto Eriksen
    • Kåre Otto Eriksen
    • E21B47/00E21B47/10E21B49/00
    • E21B49/008
    • An assembly for transient and continuous testing of an open portion of a well bore arranged in a lower part of a drill string includes at least two packers fixed outside of the drill string, which are expandable for isolating a reservoir interval. The assembly includes a down-hole pump, sample chamber, sensors, closing valve, sensors and telemetry for measuring and realtime transmission of flow rate, pressure and temperature of fluid flow from the reservoir interval, from the down-hole pump, in the drill string and in an annulus above the packers, a mud driven turbine or electric cable, and a circulation unit. The circulation unit, independent of the circulation rate for mud to the annulus, can feed formation fluid from the reservoir interval into the annulus, so that at any time a well can be kept in over balance and the mud can solve the formation fluid from the reservoir interval.
    • 用于对布置在钻柱的下部中的井眼的开口部分进行瞬时和连续测试的组件包括固定在钻柱外部的至少两个封隔器,其可扩张以隔离储存间隔。 该组件包括井下泵,样品室,传感器,关闭阀,传感器和遥测,用于测量和实时传输来自储层间隔的流体流量,压力和温度,钻井中的钻井泵 并且在封隔器上方的环形空间中,泥浆驱动的涡轮机或电缆以及循环单元。 循环单元,独立于泥浆到环空的循环速率,可以将地层流体从储层间隙输送到环空中,从而可以在任何时候将井保持在平衡状态,泥浆可以从地层流体 储层间隔。
    • 7. 发明申请
    • METHOD AND APPARATUS FOR COMPOSITION BASED COMPRESSOR CONTROL AND PERFORMANCE MONITORING
    • 用于基于组合的压缩机控制和性能监测的方法和装置
    • US20130170952A1
    • 2013-07-04
    • US13809742
    • 2011-07-14
    • Lars BrenneJan Høydal
    • Lars BrenneJan Høydal
    • F04D27/02
    • F04D27/0215F04D17/10F04D27/001F04D27/0207F04D27/0223F04D29/4206F04D31/00
    • A method and apparatus controls a compressor, where the compressor inlet gas may contain water and/or non-aqueous liquid. The method includes the steps of measuring temperature at the compressor inlet and/or outlet side, measuring pressure at the compressor inlet and outlet side in order to determine a compressor pressure ratio, measuring fluid mixture density at the compressor inlet and/or outlet side, measuring individual volume fractions of gas, water and non-aqueous liquid at the compressor inlet and/or outlet side, measuring fluid velocity at the compressor inlet and/or outlet side, and determining individual flow rates of gas, water and non-aqueous liquid on the basis of the measured individual volume fractions of gas, water and non aqueous liquid and the fluid velocity at the compressor inlet and/or outlet side.
    • 一种方法和装置控制压缩机,其中压缩机入口气体可以含有水和/或非水性液体。 该方法包括以下步骤:测量压缩机入口和/或出口侧的温度,测量压缩机入口和出口侧的压力,以便确定压缩机压力比,测量压缩机入口和/或出口侧的流体混合物密度, 在压缩机入口和/或出口侧测量气体,水和非水液体的各个体积分数,测量压缩机入口和/或出口侧的流体速度,以及确定气体,水和非水液体的单独流速 基于测量的气体,水和非水性液体的单个体积分数和压缩机入口和/或出口侧的流体速度。
    • 9. 发明申请
    • SOLVENT AND GAS INJECTION RECOVERY PROCESS
    • 溶剂和气体注入恢复过程
    • US20130025858A1
    • 2013-01-31
    • US13577120
    • 2011-02-03
    • Lars HøierJostein AlvestadAurelie LagisquetEimund Gilje
    • Lars HøierJostein AlvestadAurelie LagisquetEimund Gilje
    • E21B43/22
    • E21B43/24
    • A process for the recovery of hydrocarbon such as bitumen/EHO from a hydrocarbon bearing formation in which are situated an upper injection well and a lower production well, the method comprising the steps: preheating an area around and between the wells by circulating hot solvent through the completed interval of each of the wells until sufficient hydraulic communication between both wells is achieved; injecting one of more hydrocarbon solvents into the upper injection well at or above critical temperature of the solvent or solvent mixture, thereby causing a mixture of hydrocarbon and solvent to flow by gravity drainage to the lower production well; and producing the hydrocarbon to the surface through the lower production well. A non-condensable gas may be injected into the solvent chamber created by the hydrocarbon solvent.
    • 一种从含烃地层中回收烃类沥青/ EHO的方法,其中位于上部注入井和较低的生产井中,该方法包括以下步骤:通过循环热溶剂通过 每个井的完井间隔达到两井之间充分的液压连通; 在溶剂或溶剂混合物的临界温度或更高的温度下将更多的烃溶剂注入上部注入井中,从而使烃和溶剂的混合物通过重力排放流向下部生产井; 并通过较低的生产井将烃生产到表面。 可以将不可冷凝的气体注入由烃溶剂产生的溶剂室中。