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Study on Freezing Characteristics of Supercooled Water Droplets Impacting on Solid Surfaces

机译:过冷水滴撞击固体表面的冻结特性研究

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摘要

An experimental study was carried out to investigate the freezing characteristics of supercooled water droplets impacting on solid surfaces. Each water droplet was supercooled on the inside surface of a water-repellent guideway in a cooled air environment and then blasted horizontally by a jet of pressurized cooled air to impact on the vertical surface of a test block. The deformation and freezing of the droplets were observed using a high-speed camera. The droplets were frozen under varying conditions of air temperature, surface temperature, impact velocity and droplet volume. The results indicated that the freezing behavior of a droplet was strongly affected by the condition of the solid surface. Further, the results revealed that the supercooling solidification process consisted of two steps with two greatly different time scales. Finally, it was shown that the freezing behavior of an ice layer was affected by the presence of a liquid-like thin film.
机译:进行实验研究以研究过冷水滴撞击固体表面的冻结特性。在冷却的空气环境中,每个水滴在疏水导轨的内表面上过冷,然后通过加压的冷却空气射流水平喷射,以冲击测试块的垂直表面。使用高速照相机观察液滴的变形和冻结。在空气温度,表面温度,冲击速度和液滴体积的变化条件下将液滴冷冻。结果表明,液滴的冻结行为受固体表面状况的强烈影响。此外,结果表明,过冷凝固过程由两个步骤组成,两个步骤的时间尺度截然不同。最后,显示出冰层的冻结行为受到液体状薄膜的存在的影响。

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