【2h】

Shrinking instability of toroidal droplets

机译:环形液滴的收缩不稳定性

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摘要

Toroidal droplets are inherently unstable due to surface tension. They can break up, similar to cylindrical jets, but also exhibit a shrinking instability, which is inherent to the toroidal shape. We investigate the evolution of shrinking toroidal droplets using particle image velocimetry. We obtain the flow field inside the droplets and show that as the torus evolves, its cross-section significantly deviates from circular. We then use the experimentally obtained velocities at the torus interface to theoretically reconstruct the internal flow field. Our calculation correctly describes the experimental results and elucidates the role of those modes that, among the many possible ones, are required to capture all of the relevant experimental features.
机译:环形液滴由于表面张力而固有地不稳定。它们可能会破裂,类似于圆柱状射流,但也会表现出收缩的不稳定性,这是环形形状固有的。我们使用粒子图像测速仪研究收缩的环形液滴的演变。我们获得了液滴内部的流场,并表明随着圆环的演化,其横截面明显偏离圆形。然后,我们在环面使用实验获得的速度从理论上重建内部流场。我们的计算正确地描述了实验结果,并阐明了捕获所有相关实验特征所需的许多可能模式中的那些模式的作用。

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