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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Dynamics of a successive train of monodispersed millimetric-sized droplets impact on solid surfaces at low Weber number
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Dynamics of a successive train of monodispersed millimetric-sized droplets impact on solid surfaces at low Weber number

机译:在低韦伯号的实体表面上撞击一列单分体毫米大小液滴的动态

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摘要

An experimental study of successive impingement of a single train of monodispersed millimetric-sized droplets at low Weber number (We 200) is presented. A piezoelectric droplet generator which is capable of adjusting droplet impact frequency and droplet diameter is fabricated and used to produce monodispersed millimetricsized droplets. The interaction phenomena between the droplet-surface and droplet-film were observed using a high-speed camera at 4000 fps. The variation of the dimensionless spread factor and flatness factor of the liquid film formed by the successive impacts of droplets over time were recorded. The impact frequency of droplets was varied between 40 Hz and 85 Hz. The Weber number ranged from 29.6 to 196.6. And three types of solid surface with different static contact angles (71.5 degrees, 82.7 degrees, 90.1 degrees) were tested in this work. The results showed that the impact frequency of droplets in the selected range had a minor effect on the maximum spread factor and post-impact oscillation. The maximum dimensionless spread factor of the liquid film formed by the successive impacts at the same dimensionless time tends to be greater when Weber number was higher and static contact angle was lower. The post-impact oscillation was more violent when Weber number was lower and static contact angle was larger. Empirical correlations for the maximum spread factor and average flatness factor under different conditions were obtained based on the experiment results.
机译:提出了一种在低韦伯数(We< 200)处的单分散毫米液滴的单个火车的连续冲击的实验研究。制造能够调节液滴冲击频率和液滴直径的压电液滴发生器,并用于生产单分散的毫米液体液滴。使用4000FPS的高速相机观察液滴表面和液滴膜之间的相互作用现象。记录了通过液滴随时间的连续冲击形成的液体膜的无量子散射因子和平坦度因子的变化。液滴的冲击频率在40Hz和85Hz之间变化。韦伯号码从29.6到196.6。在这项工作中测试了三种具有不同静态接触角(71.5度,82.7度,90.1度)的固体表面。结果表明,所选范围内液滴冲击频率对最大扩展因子和冲击后振荡产生了微小的影响。当韦伯数更高且静态接触角较低时,通过在相同的无量纲时间的连续冲击形成的液体膜的最大无量纲扩散因子趋于更大。当韦伯数量较低时,冲击后振荡更加暴力,静态接触角越大。基于实验结果,获得了不同条件下最大扩展因子和平均平坦度因子的经验相关性。

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