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SUBCOOLED BOILING IN THE ULTRASONIC FIELD (ON CAUSE OF MEB GENERATION)

机译:超声场中的过冷沸腾(由于生成金属)

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Subcooled quasi-pool boiling for water, ethanol aqueous solutions of 10wt% and 50wt% and ethanol in ultrasonic field is performed for the upward flat heating surface of copper block with 10mm in diameter under the atmospheric condition. Tested liquid subcooling is 15K, 20K and 25K for water and aqueous solutions of ethanol and 20K, 30K and 40K for 100wt% ethanol.At 20K of liquid subcooling for water and ethanol aqueous solutions, no microbubble emission boiling (MEB) has been observed in quasi-pool boiling. Even if MEB occurred, the heat flux does not increase and it turns easily to film boiling. In ultrasonic field, MEB occurs remarkably and the heat flux increases higher than the ordinary critical heat flux as observed in highly subcooled boiling. The experimental results show that the ultrasonic vibration introduces the instability of interface of liquid and vapor and accelerate MEB at 20K of liquid subcooling for water and aqueous solutions of ethanol.At 15K of liquid subcooling for water and aqueous solutions, no effect of ultrasonic vibration is observed.At 25K of liquid subcooling, the ultrasonic vibration extends MEB region to higher superheat of heating surface for aqueous solutions of ethanol.The maximum heat flux in MEB decreases with increasing of ethanol concentration and becomes CHF for 100wt% ethanol. No effect of ultrasonic vibration on boiling is observed for the 100wt% ethanol in the present experiments.
机译:脱硫池沸腾的水,对于在大气条件下,对铜块向上平坦的加热表面进行10wt%和50wt%的乙醇水溶液,在大气条件下直径为10mm。测试液过冷却为100wt%乙醇的水和乙醇水溶液和20k,30k和40k的15k,20k和25k。 在20K的水和乙醇水溶液中的液体过冷中,在准池沸腾中没有观察到微泡发射沸腾(MEB)。即使MEB发生,热量通量也不会增加,并且很容易转向胶片沸腾。在超声波场中,MEB显着发生,并且热通量比在高度过脱机的沸腾中观察到的普通临界热通量增加。实验结果表明,超声波振动介绍了液体和蒸气界面的不稳定性,加速MEB在20K液过冷中进行水和乙醇水溶液。 在15K的水和水溶液中的液体过冷中,没有观察到超声波振动的影响。 在25K的液体过冷处,超声波振动将MEB区域延伸到乙醇水溶液的加热表面的更高过热。 MEB中的最大热通量随着乙醇浓度的增加而降低,并使100wt%乙醇变为CHF。对于本实验中的100wt%乙醇,观察到超声波振动对沸腾的影响。

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