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    • 2. 发明申请
    • TREATMENT OF OIL AND OIL-CONTAINING FORMULATIONS
    • 含油和含油配方的处理
    • US20140332446A1
    • 2014-11-13
    • US14240182
    • 2012-08-20
    • Philip FletcherJeffrey ForsythCory Jaska
    • Philip FletcherJeffrey ForsythCory Jaska
    • C10G33/04
    • C10G33/04B01D17/047E21B21/068E21B43/34
    • There is disclosed a method of separating a mixture (e.g. dispersion) of oil and water into oil-rich and water-rich phases, the method comprising the steps: (i) selecting a mixture which comprises oil recovered from a subterranean formation and a treatment formulation, wherein said treatment formulation was added to the oil in order to facilitate its recovery and/or mobility, wherein said treatment formulation has an Interfacial Tension (IFT), measured against a sample of said oil in the range 2 to 20 mN/m; (ii) directing said mixture to a separation means; and (iii) in the absence of a chemical demulsifier, heating the mixture until separation is effected at least partially under gravity. Preferably the IFT is in the range 9 to 12 mN/m. The mixture of oil and water may be formed by treating oil in a subterranean formation.
    • 公开了将油和水的混合物(例如分散体)分离成富油和富水相的方法,该方法包括以下步骤:(i)选择包含从地层回收的油和处理的混合物 制剂,其中将所述处理制剂加入到油中以促进其回收和/或迁移性,其中所述处理制剂具有界面张力(IFT),其对所述油的样品测量范围为2至20mN / m ; (ii)将所述混合物引导至分离装置; 和(iii)在没有化学破乳剂的情况下,加热混合物直至至少部分地在重力下进行分离。 优选地,IFT在9至12mN / m的范围内。 油和水的混合物可以通过处理地层中的油而形成。
    • 5. 发明申请
    • HYDROCARBONS
    • 油库
    • US20100186966A1
    • 2010-07-29
    • US12452079
    • 2008-06-03
    • Michael John CrabtreePhilip FletcherJeffrey Forsyth
    • Michael John CrabtreePhilip FletcherJeffrey Forsyth
    • E21B43/00
    • C09K8/588C09K8/882C09K8/887C10M173/02C10M2209/062C10N2230/02E21B43/121E21B43/127E21B43/128E21B43/25C10M2209/04
    • An oil well includes a wellbore (2), below ground level (4), which extends to an oil reservoir (6). The wellbore includes a casing (8) within which is arranged a progressing cavity pump (PCP) 10 which includes an inlet (12) at its lower end and is connected at its upper end to production tube (14). An annulus (16) is defined between the pump (10)/tube (14) and the casing (8). The annulus communicates with the reservoir and includes a head (20) of reservoir fluid. A water based formulation which comprises an optionally cross-linked polyvinylalcohol can be poured down the annulus (16) and pass under gravity to the reservoir (6), immediately upstream of inlet (12). The formulation may improve the performance and efficiency of the pump (10) due to its ability to increase the mobility of the oil in the reservoir immediately upstream of the pump (10) and/or enhance the ability of the oil to enter the pump inlet. Furthermore, by improving mobility and/or reducing the level of back pressure when the oil enters the pump inlet (or any other constriction) the rate of flow of oil from the reservoir into the wellbore may be increased resulting in an increased rate of oil production.
    • 油井包括在地平面(4)下方的井筒(2),其延伸到油储存器(6)。 井筒包括壳体(8),在壳体(8)内设置有前进空腔泵(PCP)10,其在其下端包括入口(12),并在其上端连接到生产管(14)。 在泵(10)/管(14)和壳体(8)之间限定有环(16)。 环形空间与储存器连通并且包括储存器流体的头部(20)。 包含任选交联的聚乙烯醇的基于水的制剂可以倒入环状物(16),并且在入口(12)的紧邻上游处重力通过储存器(6)。 该配方可以改善泵(10)的性能和效率,因为其能够增加紧邻泵(10)上游的容器内的油的流动性和/或提高油进入泵入口的能力 。 此外,当油进入泵入口(或任何其他收缩)时,通过改善流动性和/或降低背压水平,可以增加油从储层进入井眼的流量,从而提高石油产量 。