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Parameter study of microdroplet formation by impact of millimetre-size droplets onto a liquid film

机译:毫米级液滴撞击液膜形成微滴的参数研究

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The objective of this work is to carry out an experimental investigation on the influence of different parameters such as liquid properties (viscosity and liquid-gas surface tension), impacting droplet properties (velocity v_i and diameter d_i) and the thickness of liquid film on the emission of airborne particles produced by the impact of millimetre-size droplets onto a liquid film. Our results show that in the variation range studied, the increase of v_i and d_i or the decrease in liquid film thickness produces an increase in the mean number of microdroplets emitted by impact in the size range 2-50 μm. Furthermore, it was also observed that an increase in viscosity involves a steep decrease in the mean number of microdroplets emitted. These microdroplets may be produced by the fingers pinching of the crown formed during impact. In the case of low surface tension liquid, the formation of bubbles involves high production of droplets smaller than 15 μm. The results presented here constitute a database of the micro-droplets produced to validate models of droplet impact outcomes.
机译:这项工作的目的是对不同参数的影响进行实验研究,这些参数包括液体性质(粘度和液-气表面张力),影响液滴性质(速度v_i和直径d_i)以及液膜厚度对样品的影响。毫米级液滴撞击到液膜上而产生的空气传播颗粒的排放。我们的结果表明,在所研究的变化范围内,v_i和d_i的增加或液膜厚度的减小会导致在2-50μm的尺寸范围内,撞击产生的微滴平均数量增加。此外,还观察到粘度的增加涉及所发射的微滴的平均数目的急剧下降。这些微滴可以通过在撞击过程中手指捏住形成的冠状物而产生。在低表面张力液体的情况下,气泡的形成涉及小于15μm的液滴的大量产生。此处显示的结果构成了产生的微滴的数据库,以验证微滴影响结果的模型。

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