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Self-similar impulsive capillary waves on a ligament

机译:韧带上的自相似脉冲毛细波

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We study the short-time dynamics of a liquid ligament, held between two solid cylinders, when one is impulsively accelerated along its axis. A set of one-dimensional equations in the slender-slope approximation is used to describe the dynamics, including surface tension and viscous effects. An exact self-similar solution to the linearized equations is successfully compared to experiments made with millimetric ligaments. Another non-linear self-similar solution of the full set of equations is found numerically. Both the linear and non-linear solutions show that the axial depth at which the liquid is affected by the motion of the cylinder scales like root t, a consequence of the imposed radial uniformity of the axial velocity at the cylinder surface, and differs from t(2/3) known to prevail in surface-tension-driven flows. The non-linear solution presents the peculiar feature that there exists a maximum driving velocity U-star above which the solution disappears, a phenomenon probably related to the de-pinning of the contact line observed in experiments for large pulling velocities. (C) 2015 AIP Publishing LLC.
机译:我们研究了在一个固体圆柱体沿其轴的脉冲加速情况下,固定在两个固体圆柱体之间的液体韧带的短时动力学。细长斜率近似中的一组一维方程用于描述动力学,包括表面张力和粘性效应。已成功将线性方程的精确自相似解与用毫米韧带进行的实验进行了比较。在数值上找到了整套方程组的另一个非线性自相似解。线性和非线性解决方案均表明,液体受圆柱尺度(如根t)的运动影响的轴向深度是在圆柱体表面施加轴向速度的径向均匀性的结果,并且不同于t (2/3)已知在表面张力驱动的流动中占主导地位。非线性解决方案具有一个独特的特征,即存在一个最大驱动速度U-star,在该速度以上,该解决方案就消失了,这种现象可能与在大拉动速度的实验中观察到的接触线的脱钉有关。 (C)2015 AIP Publishing LLC。

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