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液滴飞溅中的边界层效应。

Boundary-layer effects in droplet splashing.

作者信息

Riboux Guillaume, Gordillo José Manuel

机构信息

Área de Mecánica de Fluidos, Departamento de Ingeniería Aeroespacial y Mecánica de Fluidos, Universidad de Sevilla, Avenida de los Descubrimientos s/n 41092, Sevilla, Spain.

出版信息

Phys Rev E. 2017 Jul;96(1-1):013105. doi: 10.1103/PhysRevE.96.013105. Epub 2017 Jul 13.

Abstract

A drop falling onto a solid substrate will disintegrate into smaller parts when its impact velocity V exceeds the so-called critical velocity for splashing, i.e., when V>V^{}. Under these circumstances, the very thin liquid sheet, which is ejected tangentially to the solid after the drop touches the substrate, lifts off as a consequence of the aerodynamic forces exerted on it. Subsequently, the growth of capillary instabilities breaks the toroidal rim bordering the ejecta into smaller droplets, violently ejected radially outward, provoking the splash [G. Riboux and J. M. Gordillo, Phys. Rev. Lett. 113, 024507 (2014)]PRLTAO0031-900710.1103/PhysRevLett.113.024507. In this contribution, the effect of the growth of the boundary layer is included in the splash model presented in Phys. Rev. Lett. 113, 024507 (2014)PRLTAO0031-900710.1103/PhysRevLett.113.024507, obtaining very good agreement between the measured and the predicted values of V^{} for wide ranges of liquid and gas material properties, atmospheric pressures, and substrate wettabilities. Our description also modifies the way at when the liquid sheet is first ejected, which can now be determined in a much more straightforward manner than that proposed in Phys. Rev. Lett. 113, 024507 (2014)PRLTAO0031-900710.1103/PhysRevLett.113.024507.

摘要

当液滴撞击固体基底的速度V超过所谓的飞溅临界速度(即V > V*)时,落到固体基底上的液滴会分解成更小的部分。在这种情况下,液滴接触基底后沿切线方向喷射到固体上的极薄液膜,会由于施加在其上的气动力而脱离。随后,毛细不稳定性的发展会将围绕喷射物的环形边缘破裂成更小的液滴,这些液滴剧烈地径向向外喷射,引发飞溅现象[G. 里布克斯和J. M. 戈尔迪略,《物理评论快报》113, 024507 (2014)] PRLTAO0031 - 900710.1103/PhysRevLett.113.024507。在本论文中,边界层发展的影响被纳入到《物理评论快报》113, 024507 (2014) PRLTAO0031 - 900710.1103/PhysRevLett.113.024507中提出的飞溅模型中,对于广泛的液体和气体材料属性、大气压力以及基底润湿性范围,在V*的测量值和预测值之间取得了非常好的一致性。我们的描述还改变了液膜首次喷射的方式,现在可以用一种比《物理评论快报》113, 024507 (2014) PRLTAO0031 - 900710.1103/PhysRevLett.113.024507中提出的方法更为直接的方式来确定。

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