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TRANSITION OF SCALING FOR PINCH-OFF OF AN AXISYMMETRIC LIQUID LIGAMENT IN ANOTHER IMMISCIBLE LIQUID

机译:轴对称液体韧带在另一种不混溶液体中夹断的标度转换

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Scaling for pinch-off of an axisymmetric liquid ligament in another immiscible liquid is studied computationally for inter-mediate Reynolds number, where both inertial and viscous forces are dominant. Interface motion near pinch-off is traced by a front tracking /finite difference method with higher resolution. When the ligament breaks up, a thin thread forms between a bulb of the tip and the rest of the ligament. Computational results show that the minimum radius of the thread decreases with time and the ex-ponent of time shifts from 2/3 to 1. This shift corresponds to the transition from potential flow scaling law to the scaling law for viscous thread in another viscous fluid. The rate of the thinning down of the thread is in good agreement with the one obtained from experiments for very small Reynolds number range, where viscous force is dominant. Since the length scale becomes very small close to the pinch-off, the viscous effect overcomes the in-ertial effect and the scaling alters from the potential flow scaling law to the viscous scaling law.
机译:对于中间惯性力和粘性力均占主导的中间雷诺数,通过计算研究了在另一种不混溶的液体中夹断轴对称液体韧带的比例。通过捏合前/有限差分方法可以更精确地跟踪夹断附近的界面运动。当韧带破裂时,在尖端的球茎和其余韧带之间会形成一条细线。计算结果表明,螺纹的最小半径随时间减小,时间的比例从2/3变为1。此位移对应于从潜在流量缩放定律到粘性流体在另一种粘性流体中的缩放定律的过渡。 。细线的变细率与在很小的雷诺数范围(由粘性力起主导作用)的实验中获得的变率非常吻合。由于长度标度在接近夹断处变得非常小,因此粘性效应克服了惯性效应,并且标度从潜在的流量标度定律变为粘性标度定律。

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