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首页> 外文期刊>The European physical journal, E. Soft matter >Activated drops: Self-excited oscillation, critical speeding and noisy transport
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Activated drops: Self-excited oscillation, critical speeding and noisy transport

机译:活化液滴:自激振荡,临界速度和嘈杂的运输

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摘要

A small drop (~10 μl) of water exhibits critical speeding dynamics on an inclined superhydrophobic pillared surface, in that it moves very slowly at first, but speeds up rapidly after a critical velocity is reached. During the mobile phase, some of the natural vibration modes of the drops are self-excited on a pillared surface, but not on a smooth hydrophobic surface. Additional experiments were carried out with glycerin and the solutions of water and glycerin that allowed their density and surface tension to be held more or less constant, while their viscosity could be varied. The terminal velocities of these drops following the critical speeding did not exhibit the expected decrease with increasing viscosity, but showed a highly non-linear behavior, exhibiting a maximum at an intermediate viscosity. Any of these drops moves steadily on a sub-critically inclined pillared substrate when it is subjected to a mechanical noise, the dynamics of which is remarkably similar to that obtained from another designed experiment in which the drops were made to cross a physical barrier assisted by an external noise. The dynamics of the low viscosity (1mPa s to 5.3mPa s) drops are amenable to a Kramers-like transition rate in the low friction limit, although the overall dynamics is found to be sub-Arrhenius. This work highlights the importance of the fluctuation of a drop that is either self-excited or that induced by an external noise in its motion on a surface.
机译:一小滴(〜10μl)的水在倾斜的超疏水柱状表面上显示出临界的速度动力学,因为它起初移动非常缓慢,但在达到临界速度后迅速加速。在流动相期间,液滴的某些自然振动模式会在带柱子的表面上自激,而不是在光滑的疏水性表面上自激。用甘油以及水和甘油的溶液进行了另外的实验,这使它们的密度和表面张力或多或少保持恒定,而粘度却可以变化。在临界转速下,这些液滴的最终速度并未显示出随着粘度增加而预期的下降,而是表现出高度的非线性行为,在中等粘度下表现出最大值。这些液滴中的任何一个在受到机械噪声的作用下都会在亚临界倾斜柱状衬底上稳定移动,其动力学显着类似于从另一个设计实验中获得的动力学,在该实验中,使液滴穿过物理屏障,并借助辅助外部噪音。低粘度(1mPa s至5.3mPa s)液滴的动力学特性在低摩擦极限下可达到类似Kramers的转变速率,尽管总体动力学特性低于亚伦尼厄斯。这项工作突显了液滴的波动的重要性,液滴的波动既可以是自激的,也可以由表面运动中的外部噪声引起。

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