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反弹抑制液滴对热表面的冲击:表面温度和凹度的影响。

Rebounding suppression of droplet impact on hot surfaces: effect of surface temperature and concaveness.

机构信息

Aerospace Engineering Department, Sharif University of Technology, 14588-89694, Iran.

出版信息

Soft Matter. 2019 Jan 30;15(5):1017-1026. doi: 10.1039/c8sm02271b.

Abstract

When a droplet impinges on a hot surface it is crucial to increase the contact time or decrease the rebounding distance if the heat transfer between the droplet and the surface is important. This will be more sensitive when the temperature regime is above the Leidenfrost values. The focus of the present experimental study is on the maximum height of drop bouncing after impinging on flat and semi-cylindrical concave surfaces, in particular in terms of surface temperature. It is shown that the behavior of the lamella during the spreading to its maximum diameter has a considerable impact on the maximum height of the drop bouncing. For different impact Weber numbers the map of thermal versus inertia effects is extracted for both the flat and concave surfaces for rebound and thermal atomization mid-regimes. It was shown that the thermal atomization mid-regime was eliminated in the case of drop impact on the concave surface in a wide range of impact Weber numbers and surface temperatures. The variations in rebounding and maximum heights at different regions of the maps are quantified and discussed. The morphology of drop impact on the concave surface was captured and the influence of its asymmetric deformation on extensive suppression of drop bouncing was discussed. Finally, the amount of dissipated energy due to drop deformation was obtained based on an energy balance analysis.

摘要

当液滴撞击热表面时,如果液滴与表面之间的热传递很重要,则需要增加接触时间或减少回弹距离。当温度制度高于莱顿弗罗斯特值时,这将更加敏感。本实验研究的重点是液滴撞击平壁和半圆柱凹面后的最大回弹高度,特别是从表面温度方面来看。结果表明,液滴在扩展到最大直径过程中变形的行为对液滴的最大回弹高度有很大的影响。对于不同的冲击韦伯数,提取了平壁和凹面在回弹和热雾化中间区的热惯性效应图谱。结果表明,在较宽的冲击韦伯数和表面温度范围内,液滴撞击凹面时消除了热雾化中间区。在图谱的不同区域,对回弹和最大高度的变化进行了量化和讨论。捕捉到液滴撞击凹面的形态,并讨论了其非对称变形对液滴回弹的广泛抑制的影响。最后,基于能量平衡分析获得了由于液滴变形而耗散的能量。

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