【2h】

Break-up dynamics of fluctuating liquid threads

机译:波动的液体螺纹的断裂动力学

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摘要

The thinning dynamics of a liquid neck before break-up, as may happen when a drop detaches from a faucet or a capillary, follows different rules and dynamic scaling laws depending on the importance of inertia, viscous stresses, or capillary forces. If now the thinning neck reaches dimensions comparable to the thermally excited interfacial fluctuations, as for nanojet break-up or the fragmentation of thermally annealed nanowires, these fluctuations should play a dominant role according to recent theory and observations. Using near-critical interfaces, we here fully characterize the universal dynamics of this thermal fluctuation-dominated regime and demonstrate that the cross-over from the classical two-fluid pinch-off scenario of a liquid thread to the fluctuation-dominated regime occurs at a well-defined neck radius proportional to the thermal length scale. Investigating satellite drop formation, we also show that at the level of the cross-over between these two regimes it is more probable to produce monodisperse droplets because fluctuation-dominated pinch-off may allow the unique situation where satellite drop formation can be inhibited. Nonetheless, the interplay between the evolution of the neck profiles from the classical to the fluctuation-dominated regime and the satellites’ production remains to be clarified.
机译:当液滴从水龙头或毛细管上脱离时,可能会发生破裂前液颈变稀的动力学,这取决于惯性,粘性应力或毛细管力的重要性,遵循不同的规则和动态缩放定律。如果现在变细的颈部达到与热激发界面波动相当的尺寸,例如对于纳米射流破裂或热退火纳米线的断裂,那么根据最近的理论和观察,这些波动应该起主导作用。使用近临界界面,我们在这里完全表征了这种热波动主导状态的通用动力学,并证明了从经典的两股液体夹断情形到液体波动主导状态的跨越发生了。与热量长度比例成正比的定义明确的颈部半径。在研究卫星滴形成过程中,我们还表明,在这两种情况之间的交叠水平上,更可能产生单分散液滴,因为以波动为主的夹断可能允许抑制卫星滴形成的独特情况。尽管如此,脖子轮廓从经典状态演变到以波动为主的状态与人造卫星的相互作用之间的相互作用仍有待阐明。

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