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首页> 外文期刊>Journal of Fluid Mechanics >Flow regimes for the immiscible liquid-liquid displacement in capillary tubes with complete wetting of the displaced liquid
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Flow regimes for the immiscible liquid-liquid displacement in capillary tubes with complete wetting of the displaced liquid

机译:完全润湿被置换液体后毛细管中不可混溶液-液置换的流动方式

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摘要

The motion of two immiscible liquids in a capillary tube is analysed, theoretically and numerically, for the case in which a residual film confines the displacing liquid to the core of this tube. The theoretical analysis has shown that the three flow regimes predicted by Taylor (J. Fluid Mech., vol. 10, 1961, pp. 161-165), for the case of gas-displacement, can only be achieved when the ratio of the viscosity of the displaced fluid to that of the displacing one is greater than 2. An elliptic mesh generation technique, coupled with the Galerkin finite-element method, IS used to Compute the velocity field and the configuration of the interface between the two fluids. A map of cases in the Cartesian space defined by the capillary number (Ca) and the viscosity ratio (N-mu) is constructed in order to locate the different flow patterns the problem exhibits. The critical capillary number at which the flow enters the transition range between the bypass regime and the full-recirculating one is given. While a decrease of the fraction of mass attached to the wall is achieved by decreasing Ca or increasing N-mu, bypass flow patterns are formed as a consequence of high values of the capillary number and viscosity ratio.
机译:对于残留膜将置换液限制在该管芯的情况,从理论上和数值上分析了两种不混溶的液体在毛细管中的运动。理论分析表明,对于气体驱替,泰勒(J. Fluid Mech。,vol。10,1961,pp。161-165)预测的三种流态只有在以下情况下才能实现:置换后的流体与置换后的流体的粘度大于2。椭圆网格生成技术与Galerkin有限元方法结合使用,用于计算速度场和两种流体之间的界面构型。构造由毛细数(Ca)和粘度比(N-mu)定义的笛卡尔空间中的情况图,以定位问题所表现出的不同流动模式。给出了进入旁通状态与全循环状态之间过渡区域的临界毛细管数。尽管通过减少Ca或增加N-mu来减少附着在壁上的质量分数,但由于毛细管数和粘度比值较高,形成了旁通流型。

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