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Three-Phase Flow in Porous Media: Wettability Effect on Residual Saturations During Gravity Drainage and Tertiary Waterflood

机译:多孔介质中的三相流:重力引流和三次注水过程中润湿性对残余饱和度的影响

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Three-phase flow configurations occur in many situations in petroleum engineering, gravity assisted gas displacement, tertiary waterflood, water alternating gas process (W.A.G.). Therefore residual saturations (oil and gas) knowledge during three-phase flow is a crucial point for reservoir engineers.In this paper we present experimental results dealing with the influence of wettability on two and three-phase flow in porous media in short (0.25m) and long (lm) cores.Forced displacement of gas by water and oil have been performed on the short cores while gas/oil gravity drainage in presence of irreducible water (S_(wi)) followed by a tertiary waterflood have been performed on the long cores.For all the experiments the saturation profiles are measured using a dual-energy gamma-ray attenuation technique.Originality of the experiments lies on the fact that gas/oil gravity drainage and tertiary waterflood are performed on the same core during the same experiment. Two phase flow is obtained at the bottom of the core (in the capillary head region) while three-phase flow is observed in the upper part of the core. Local measurement of saturation profiles show that residual oil saturation at the end of gravity drainage depends on wettability. However we do not observe a wettability effect on three-phase residual gas saturation. Behaviour of three-phase residual oil saturation is much more complicated because its value and saturation profile depends strongly on wettability.
机译:在石油工程,重力辅助气体驱替,三次注水,水交替气工艺(W.A.G.)的许多情况下,都会出现三相流动配置。因此,三相流过程中的剩余饱和度(石油和天然气)知识对于油藏工程师来说是至关重要的一点。 在本文中,我们给出了关于润湿性对短(0.25m)长芯(lm)和长(lm)芯多孔介质中两相和三相流影响的实验结果。 在短岩心上已进行了由水和油强迫驱替的气体,而在长岩心上已进行了在存在不可还原水(S_(wi))的情况下进行气/油重力排水,然后进行三次注水。 对于所有实验,使用双能伽马射线衰减技术测量饱和度曲线。 实验的独创性在于,在同一实验中,在同一岩心上进行了天然气/石油重力排水和三次注水。在芯的底部(在毛细管头区域)获得两相流,而在芯的上部观察到三相流。饱和度剖面的局部测量表明,重力引流结束时的剩余油饱和度取决于润湿性。但是,我们没有观察到对三相残余气体饱和度的润湿性影响。三相残余油饱和度的行为要复杂得多,因为其值和饱和度曲线在很大程度上取决于润湿性。

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