首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental study on instantaneously shedding frozen water droplets from cold vertical surface by ultrasonic vibration
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Experimental study on instantaneously shedding frozen water droplets from cold vertical surface by ultrasonic vibration

机译:超声振动瞬时将冷水滴从冷的垂直表面脱落的实验研究

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摘要

The ultrasonic vibration is introduced to remove adherent frozen water droplets from cold surface, which provides the possibilities for effective defrosting. The shedding processes of various frozen water droplets adhered to 70 mm × 70 mm cold vertical surface by 20 kHz and 60W ultrasonic vibration were experimentally studied. It was found that the frozen water droplets instantaneously crack and shed off from the vertical surface due to the combined effects of interface transverse shear force generated by ultrasonic mechanical vibration and impact force induced by ultrasonic acoustic pressure. However, the heating effect triggered by ultrasonic vibration has limited effect on the frozen water droplets removal. Moreover, the frozen water droplets in different diameters within 2-30 mm can be successfully removed and all the frozen water droplets in different positions of 70 mm × 70 mmcold surface can be completely shed off by 20 kHz high frequency ultrasonic vibration. The results showed that the ultrasonic vibration has a very strong ability to remove the frozen water droplets, which are the parasitic substrates for frosting, from cold flat surface and thus it is a highly potential defrosting method for practical application.
机译:引入超声波振动以从冷表面去除附着的冷冻水滴,这为有效除霜提供了可能性。实验研究了各种冷冻水滴在20 kHz和60W超声振动下附着在70 mm×70 mm冷垂直表面上的脱落过程。发现由于超声波机械振动产生的界面横向剪切力和超声波声压引起的冲击力的共同作用,冷冻的水滴瞬间破裂并从垂直表面脱落。然而,由超声振动触发的加热效果对冷冻水滴的去除作用有限。此外,通过20 kHz高频超声振动,可以成功清除2-30 mm范围内不同直径的冷冻水滴,并且可以将70 mm×70 mm冷表面不同位置的所有冷冻水滴完全去除。结果表明,超声振动具有很强的能力从冷的平坦表面上除去作为结霜的寄生基质的冷冻水滴,因此它是实际应用中极有潜力的除霜方法。

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