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Liquid-Grain Mixing Suppresses Droplet Spreading and Splashing during Impact

机译:液晶混合抑制液滴在撞击期间的液滴扩散和溅起

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摘要

Would a raindrop impacting on a coarse beach behave differently from that impacting on a desert of fine sand? We study this question by a series of model experiments, where the packing density of the granular target, the wettability of individual grains, the grain size, the impacting liquid, and the impact speed are varied. We find that by increasing the grain size and/or the wettability of individual grains the maximum droplet spreading undergoes a transition from a capillary regime towards a viscous regime, and splashing is suppressed. The liquid-grain mixing is discovered to be the underlying mechanism. An effective viscosity is defined accordingly to quantitatively explain the observations.
机译:对粗糙海滩的雨滴会影响不同的影响,从那么抗细沙的沙漠?我们通过一系列模型实验研究了该问题,其中粒状目标的填充密度,各种晶粒的润湿性,粒度,冲击液和冲击速度的变化。我们发现,通过增加个体晶粒的晶粒尺寸和/或润湿性,最大液滴传播从毛细管制度朝向粘性制度进行过渡,并抑制了溅溅。发现液晶混合是潜在的机制。相应地定义有效粘度以定量解释观察结果。

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