Interaction of Impact Liquid Drop With Splat in Spray Cooling

Gangtao Liang, Haibing Yu, Liuzhu Chen, S. Shen
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Abstract

This study investigates the interaction between an impacting liquid drop and a splat generated on a solid prior to impact, focusing mainly on the wave production and propagation on the splat with low impact velocity. Using high-speed video, the wave generation concerning the effects of Weber number is observed and analyzed, including the first wave caused by drop kinematic energy, the secondary and tertiary capillary waves subjected to surface tension. Also, the wave propagation magnitude is discussed, the purpose of which is to provide a suitable method for predicting the wave diameter. Results show that the increasing of Weber number is slightly against the wave propagation, but this effect weakens gradually. The kinematic discontinuity theory devised for crown propagation can be applied to predict the wave propagation magnitude with an excellent agreement, for both the kinematic wave and the capillary wave. In addition, the propagation speed of the wave during the drop-splat interaction is also analyzed.
喷淋冷却中冲击液滴与飞溅的相互作用
本文研究了撞击液滴与撞击前在固体上产生的碎片之间的相互作用,主要研究了低冲击速度下碎片上波的产生和传播。利用高速视频,观察和分析了韦伯数影响下的波的产生,包括由降动能引起的第一波、受表面张力作用的第二波和第三波毛细波。同时,还讨论了波的传播幅度,目的是为预测波的直径提供一种合适的方法。结果表明,韦伯数的增加对波的传播有轻微的抑制作用,但这种影响逐渐减弱。为冠状波传播而设计的运动不连续理论可用于预测波的传播强度,对运动波和毛细波都具有很好的一致性。此外,还分析了水滴-飞溅相互作用时波的传播速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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