Intermittent dynamic bursting in vertically vibrated liquid drops

A. Pototsky, I. Maksymov, S. Suslov, J. Leontini
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引用次数: 5

Abstract

A previously unreported regime of type III intermittency is observed in a vertically vibrated milliliter-sized liquid drop submerged in a more viscous and less dense immiscible fluid layer supported by a hydrophobic solid plate. As the vibration amplitude is gradually increased, subharmonic Faraday waves are excited at the upper surface of the drop. We find a narrow window of vibration amplitudes slightly above the Faraday threshold, where the drop exhibits an irregular sequence of large amplitude bursting events alternating with intervals of low amplitude activity. The triggering physical mechanism is linked to the competition between surface Faraday waves and the shape deformation mode of the drop.
垂直振动液滴的间歇动态爆裂
在一个垂直振动的毫升级液滴中观察到一种以前未报道过的III型间歇现象,该液滴浸没在由疏水固体板支撑的粘性更大、密度更低的不混相流体层中。随着振动幅值的逐渐增大,液滴上表面被激发出次谐波法拉第波。我们发现振动幅度的窄窗口略高于法拉第阈值,其中滴表现出不规则的大振幅爆破事件序列,与低振幅活动间隔交替。触发的物理机制与表面法拉第波之间的竞争和液滴的形状变形模式有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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