首页> 外文期刊>Journal of Colloid and Interface Science >DISSOLUTION OF A DROP ON A LIQUID SURFACE LEADING TO SURFACE WAVES AND INTERFACIAL TURBULENCE
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DISSOLUTION OF A DROP ON A LIQUID SURFACE LEADING TO SURFACE WAVES AND INTERFACIAL TURBULENCE

机译:液滴在液体表面上的溶解导致表面波和界面湍流的溶解

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If a droplet of liquid with a lower surface tension than that of water and partially soluble in water is deposited on a free water surface, it spreads, dissolves, and simultaneously creates surface tension gradients leading to Marangoni instability and interfacial turbulence. In a first stage, if the solubility of the drop is not too high, there is formation of patterns that evolve in time, eventually leading to interfacial turbulence and droplet disappearance. These patterns, which on occasion last quite long time intervals, result from the interaction and collision of surface waves sustained by the surface tension gradient. These surface waves have been observed with a Schlieren device and their characteristics (e.g., shape, velocity) have been measured. Two types of surface wave profiles exist: wave profile like a ''hump'' (sech-like) or like a hydraulic jump (tanh-like). We have followed their time evolution and for head-on, oblique, and overtaking collisions we have measured their trajectories. We have been able to correlate our experimental findings with available theoretical, albeit qualitative, results known about waves and shocks. (C) 1997 Academic Press. [References: 45]
机译:如果表面张力低于水且部分可溶于水的液滴沉积在自由水表面上,它会散布,溶解并同时产生表面张力梯度,从而导致Marangoni不稳定性和界面湍流。在第一阶段,如果液滴的溶解度不太高,则会形成随时间演变的图案,最终导致界面湍流和液滴消失。这些模式有时会持续很长的时间间隔,这是由表面张力梯度所维持的表面波的相互作用和碰撞导致的。用Schlieren装置已经观察到这些表面波,并且已经测量了它们的特性(例如形状,速度)。存在两种类型的表面波轮廓:像“驼峰”(类似sech)或类似水力跳跃(类似“ tanh”)的波形。我们遵循了它们的时间演变,对于正面,倾斜和超车的碰撞,我们测量了它们的轨迹。我们已经能够将我们的实验结果与已知的有关波动和冲击的理论(尽管是定性的)结果相关联。 (C)1997学术出版社。 [参考:45]

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