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首页> 外文期刊>International Journal of Multiphase Flow >Enhancement of water droplet evaporation rate by application of low frequency acoustic field
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Enhancement of water droplet evaporation rate by application of low frequency acoustic field

机译:低频声场应用水滴蒸发速率的提高

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摘要

Evaporation rates of low-density water aerosols in a cylindrical acoustic resonator were investigated experimentally, motivated by the potential use of water droplet aerosols in two-phase thermoacoustic devices. Measurements of water aerosol evaporation rates were conducted using a novel direct visualization method combining mass balance quantification based on the light scattering from water droplets and two-dimensional PIV measurements with the droplets acting as the flow visualization particles. Water droplet aerosol evaporation was monitored at a location between the resonator pressure and velocity anti-nodes, while being subjected to a low frequency (110 Hz) acoustic standing wave with various acoustic pressure amplitude (APA) values. Application of the acoustic field was found to significantly increase water droplet evaporation rates, exhibiting a linear dependency on the applied APA in the range 600 Pa < APA < 1720 Pa Normalization of the obtained results using a simple dimensional model enabled the identification of the main governing parameters controlling droplet evaporation rates. These were found to be the known Reynolds number based on relative droplet motion, the newly introduced acoustic drive ratio, and droplet-to-air temperature difference over air water vapor concentration ratio. In addition, significant variations in the acoustic intensity, detected during the experiments, were shown to be a useful marker for measurements of droplet evaporation rate. (C) 2020 Elsevier Ltd. All rights reserved.
机译:实验研究了圆柱形声谐振器中低密度水气溶胶的蒸发速率,通过两相热声器件中的水滴气溶胶潜在使用的激励。使用基于水滴的光散射和二维PIV测量与作用为流动可视颗粒的液滴的光散射,使用新的直接可视化方法进行水溶胶蒸发速率的测量。在谐振器压力和速度抗节点之间的位置监测水滴气溶胶蒸发,同时经受具有各种声压幅度(APA)值的低频(110Hz)声学驻波。发现声场的应用显着提高了水滴蒸发速率,在使用简单尺寸模型的测量结果的范围内施加的APA上呈现线性依赖性,使得使用简单的尺寸模型的识别控制液滴蒸发速率的参数。这些被发现是基于相对液滴运动的已知雷诺数,新引入的声学驱动比和空气水蒸气浓度比上的液滴到空气温差。此外,在实验期间检测到的声学强度的显着变化被证明是用于测量液滴蒸发速率的有用标记。 (c)2020 elestvier有限公司保留所有权利。

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