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Brine composition and waterflood recovery for selected crude oil/brine/rock systems.

机译:所选原油/盐水/岩石系统的盐水成分和注水回收率。

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For many years, it has been strongly recommended that injection of low salinity brines be avoided because the brine salinity plays an important role in stabilizing the clay particles at the rock surfaces. In general, decrease in the brine salinity tends to decrease clay particle stability. However, the results presented in this thesis show that decrease in brine salinity can result in a large increase in waterflood recovery.; Three kinds crude oil samples, one refined oil sample, three synthetic reservoir brines, and six kinds rocks including a target reservoir sandstone were used for this study. Results showed consistent increase in waterflood recovery with decrease in salinity of injection brine, or connate brine, or both was obtained for a variety of different crude oil/brine/rock systems. Even at residual oil saturation, switching the injection brine to dilute brine can cause an increase in oil recovery by waterflooding.; Change in rock properties with injection of dilute brine were also studied. The effect of mobile clay particles on wetting and waterflood recovery with injection of dilute brine was also investigated. Observed increase in effluent pH indicates that cation exchange occurs between the injected dilute brine and clay. The presence of mobile clay particles appears to play a key role in the increased oil recovery through increase in microscopic displacement efficiency.; The presence of polar components in crude oil, clay particles which are potential mobile, and initial water saturation are also shown to be essential to increase in oil recovery with decrease in brine salinity for both spontaneous imbibition and waterflooding. Using refined oil as the oil phase rather than crude oil; stabilizing the clay particles by firing and acidizing sandstone; or using sandstone initially 100% saturated with crude oil; all cause the oil recovery to be no longer sensitive to decrease in brine salinity. Possible mechanisms for how change in brine composition affect wettability and oil recovery by waterflooding are discussed.
机译:多年来,强烈建议避免注入低盐度盐水,因为盐水盐度在稳定岩石表面的粘土颗粒方面起着重要作用。通常,盐水盐度的降低倾向于降低粘土颗粒的稳定性。然而,本文提出的结果表明,盐水盐度的降低可以导致水驱采收率的大幅提高。本研究使用了三种原油样品,一种成品油样品,三种合成油藏盐水以及包括目标油藏砂岩在内的六种岩石。结果表明,对于各种不同的原油/盐水/岩石系统,随着注入盐水或原生盐水盐度的降低,水驱采收率不断提高。即使在残余油饱和时,将注入盐水转换为稀盐水也可以通过注水提高采油率。还研究了注入稀盐水后岩石性质的变化。还研究了流动性粘土颗粒对注入稀盐水后润湿和注水回收率的影响。观察到废水pH的升高表明在注入的稀盐水和粘土之间发生了阳离子交换。通过增加微观驱替效率,活动粘土颗粒的存在似乎在增加采油量中起关键作用。原油中极性组分的存在,潜在的流动性粘土颗粒和初始水饱和度也被证明对于自发吸水和注水都随着盐水盐度降低而提高采油率至关重要。使用精炼油作为油相而不是原油;通过烧制和酸化砂岩来稳定粘土颗粒;或使用最初被原油100%饱和的砂岩;所有这些都会导致采油对盐水盐度的降低不再敏感。讨论了盐水成分变化如何通过注水影响润湿性和油采收率的可能机理。

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