Nonaxisymmetric flow characteristics in head-on collision of spinning droplets

Chengming He, Peng Zhang
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引用次数: 5

Abstract

Effects of spinning motion on the bouncing and coalescence between a spinning droplet and a non-spinning droplet undergoing the head-on collision were numerically studied by using a Volume-of-Fluid method. A prominent discovery is that the spinning droplet can induce significant non-axisymmetric flow features for the head-on collision of equal-size droplets composed of the same liquid. Specifically, a non-axisymmetric bouncing was observed, and it is caused by the conversion of the spinning angular momentum into the orbital angular momentum. This process is accompanied by the rotational kinetic energy loss due to the interaction between the rotational and radial flows of the droplets. A non-axisymmetric internal flow and a delayed separation after temporary coalescence were also observed, and they are caused by the enhanced interface oscillation and internal-flow-induced viscous dissipation. The spinning motion can also promote the mass interminglement of droplets because the locally non-uniform mass exchange occurs at the early collision stage by non-axisymmetric flow and is further stretched along the filament at later collision stages. In addition, it is found that the non-axisymmetric flow features increase with increasing the orthogonality of the initial translational motion and the spinning motion of droplets.
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旋转液滴正面碰撞的非轴对称流动特性
采用流体体积法数值研究了自旋运动对自旋液滴与非自旋液滴在正面碰撞中弹跳和聚并的影响。一个突出的发现是,由相同液体组成的等大小液滴的正面碰撞可以诱导显著的非轴对称流动特征。具体地说,观察到一种非轴对称弹跳,它是由自旋角动量转化为轨道角动量引起的。在此过程中,由于液滴的旋转流动和径向流动的相互作用,导致了旋转动能的损失。非轴对称内部流动和暂时合并后的延迟分离是由界面振荡增强和内部流动引起的粘性耗散引起的。旋转运动还可以促进液滴的质量混合,因为在碰撞早期,非轴对称流动发生了局部不均匀的质量交换,并在碰撞后期沿着细丝进一步拉伸。此外,还发现随着液滴初始平移运动和自旋运动正交度的增加,非轴对称流动特征增加。
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