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Self-assembled levitating clusters of water droplets: pattern-formation and stability

机译:自组装的悬浮水滴簇:图案形成和稳定性

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摘要

Water forms ordered hexagonally symmetric structures (snow crystals) in its solid state, however not as liquid. Typically, mists and clouds are composed of randomly moving small droplets lacking any ordered structure. Self-organized hexagonally patterned microdroplet clusters over locally heated water surfaces have been recently observed. However, many aspects of the phenomenon are far from being well understood including what determines droplets size, arrangement, and the distance between them. Here we show that the Voronoi entropy of the cluster tends to decrease indicating to their self-organization, while coupling of thermal effects and mechanical forces controls the stability of the clusters. We explain the balance of the long-range attraction and repulsion forces which stabilizes the cluster patterns and established the range of parameters, for which the clusters are stable. The cluster is a dissipative structure similar to self-organized Rayleigh–Bénard convective cells. Microdroplet formation plays a role in a variety effects from mist and clouds to aerosols. We anticipate that the discovery of the droplet cluster phenomenon and its explanation will provide new insights on the fundamental physical and chemical processes such as microdroplet role in reaction catalysis in nature as well as new tools for aerosol analysis and microfluidic applications.
机译:水在固态时形成有序的六边形对称结构(雪晶体),但不是液态。通常,雾和云由缺乏任何有序结构的随机移动的小液滴组成。最近已经观察到在局部加热的水面上的自组织六边形图案的微滴簇。但是,这种现象的许多方面还远未得到很好的理解,包括决定液滴大小,排列以及液滴之间距离的因素。在这里,我们显示了簇的Voronoi熵趋于降低,表明它们的自组织,而热效应和机械力的耦合控制了簇的稳定性。我们解释了远程吸引力和排斥力之间的平衡,该平衡力使团簇模式稳定并建立了参数范围,使团簇保持稳定。团簇是耗散结构,类似于自组织的瑞利-贝纳德对流细胞。微滴的形成在从雾,云到气溶胶的各种效应中都起作用。我们预期液滴簇现象的发现及其解释将为基本的物理和化学过程提供新的见解,例如微滴在自然界中的反应催化中的作用以及用于气溶胶分析和微流体应用的新工具。

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