Chemical Engineering Department, Institute of Chemical Technology, Mumbai 40019, India.
Ultrason Sonochem. 2013 Jan;20(1):254-64. doi: 10.1016/j.ultsonch.2012.05.001. Epub 2012 May 11.
The present work deals with measurements of the droplet size distribution in an ultrasonic atomizer using photographic analysis with an objective of understanding the effect of different equipment parameters such as the operating frequency, power dissipation and the operating parameters such as the flow rate and liquid properties on the droplet size distribution. Mechanistic details about the atomization phenomena have also been established using photographic analysis based on the capture of the growth of the instability and sudden ejection of droplets with high velocity. Velocity of these droplets has been measured by capturing the motion of droplets as streaks. It has been observed that the droplet size decreases with an increase in the frequency of atomizer. Droplet size distribution was found to change from the narrow to wider range with an increase in the intensity of ultrasound. The drop size was found to decrease with an increase in the fluid viscosity. The current work has clearly highlighted the approach for the selection of operating parameters for achieving a desired droplet size distribution using ultrasonic atomization and has also established the controlling mechanisms for the formation of droplet. An empirical correlation for the prediction of the droplet size has been developed based on the liquid and equipment operating properties.
本工作通过摄影分析测量了超声雾化器中的液滴尺寸分布,目的是了解不同设备参数(如工作频率、耗散功率)和操作参数(如流速和液体性质)对液滴尺寸分布的影响。还通过基于捕捉不稳定性的生长和高速喷射液滴的摄影分析,确定了雾化现象的机械细节。通过捕捉液滴的运动作为条纹来测量这些液滴的速度。观察到随着雾化器频率的增加,液滴尺寸减小。随着超声强度的增加,液滴尺寸分布从窄范围变为宽范围。随着流体粘度的增加,液滴尺寸减小。本工作清楚地强调了使用超声雾化实现所需液滴尺寸分布的操作参数选择方法,并且还确定了液滴形成的控制机制。已经基于液体和设备操作特性开发了用于预测液滴尺寸的经验相关性。