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Analytical expressions for three-phase generalized relative permeabilities in water- and oil-wet capillary tubes

机译:水和油湿毛细管中三相广义相对渗透率的解析表达式

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We analyze three-phase flow of immiscible fluids taking place within an elementary capillary tube with circular cross-section under water- and oil-wet conditions. We account explicitly for momentum transfer between the moving phases, which leads to the phenomenon of viscous coupling, by imposing continuity of velocity and shear stress at fluid-fluid interfaces. The macroscopic flow model which describes the system at the Darcy scale includes three-phase effective relative permeabilities, K (i j,r) , accounting for the flux of the ith phase due to the presence of the jth phase. These effective parameters strongly depend on phase saturations, fluid viscosities, and wettability of the solid matrix. In the considered flow setting, K (i j,r) reduce to a set of nine scalar quantities, K (i j,r) . Our results show that K (i j,r) of the wetting phase is a function only of the fluid phase own saturation. Otherwise, K (i j,r) of the non-wetting phase depends on the saturation of all fluids in the system and on oil and water viscosities. Viscous coupling effects (encapsulated in K (i j,r) with i not equal j) can be significantly relevant in both water- and oil-wet systems. Wettability conditions influence oil flow at a rate that increases linearly with viscosity ratio between oil and water phases.
机译:我们分析了在水和油湿的条件下,具有圆形横截面的基本毛细管内发生的不混溶流体的三相流。通过在流体-流体界面施加速度和剪切应力的连续性,我们明确地解释了运动相之间的动量传递,这导致了粘性耦合现象。在达西尺度上描述系统的宏观流动模型包括三相有效相对磁导率K(i j,r),考虑了由于第j相的存在而导致的第i相通量。这些有效参数在很大程度上取决于相饱和度,流体粘度和固体基质的润湿性。在考虑的流量设置中,K(i j,r)减少为一组九个标量K(i j,r)。我们的结果表明,润湿相的K(i j,r)仅是流体相自身饱和度的函数。否则,非润湿阶段的K(i j,r)取决于系统中所有流体的饱和度以及油和水的粘度。在水和油湿系统中,粘性耦合效应(封装在K(i j,r)中,i不等于j)都可能非常相关。润湿性条件以与油相和水相之间的粘度比成线性增加的速率影响油流量。

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