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The Role of Liquid Properties on Lifetime of Levitated Droplets

机译:液体性质对悬浮液滴寿命的作用

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It is known that the temperature difference between a droplet and a liquid surface can extend the levitation time of that droplet by providing a thin air film between the surface and the droplet. However, the effect of fluid properties, liquid surface velocity, and air film thickness on the lifetime of droplets is still not well understood. Also, there is inconsistency in the literature about the role of vapor pressure in noncoalescence. Here we test a variety of liquids including silicone oil, Fluorinert, and water to understand the effect of surface tension, density ratio, viscosity, and heat capacity on the lifetime of a droplet. Droplets with larger heat capacity and vapor pressure like water remain floating for a longer time compared to oils. Similarly, higher surface velocity, which is seen in low viscous liquids, helps the air to replenish into the interstices beneath droplet and delay the drainage process. We also discuss the air film variation with temperature manipulation, and propose a correlation for the minimum thickness required to balance the droplet weight.
机译:已知液滴和液体表面之间的温度差可以通过在表面和液滴之间提供薄的空气膜来延长该液滴的悬浮时间。然而,流体性质,液体表面速度和气膜厚度对液滴寿命的影响仍然不是很清楚。同样,关于蒸气压在非聚结中的作用的文献也不一致。在这里,我们测试了各种液体,包括硅油,氟化物和水,以了解表面张力,密度比,粘度和热容量对液滴寿命的影响。与油相比,具有较大热容量和蒸汽压力的水滴(例如水)保持漂浮时间更长。同样,在低粘度液体中可以看到较高的表面速度,这有助于空气补充到液滴下方的空隙中并延迟排水过程。我们还讨论了温度控制下的空气膜变化,并提出了平衡液滴重量所需的最小厚度的相关性。

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