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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Ultrasound-modulated twin-fluid atomization of a liquid jet
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Ultrasound-modulated twin-fluid atomization of a liquid jet

机译:液体喷射的超声调制双流体雾化

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摘要

A resonant liquid capillary wave theory which extends Taylor's dispersion relation to include the sheltering effect of liquid surface inclination caused by air flow is presented. The resulting dispersion curves are compared to new experimental results of how drop-size and size distributions vary with surface tension and air velocity in both airblast and ultrasound-modulated twin-fluid atomization of liquids with a constant kinematic viscosity of 2 cSt. Good agreements between the theoretical predictions of relative growth rates of the capillary waves and the experimental results of drop-size and size distributions led to the conclusion that Taylor-mode breakup of capillary waves plays a very important role in twin-fluid (airblast) atomization of a liquid jet. Thus, the ultrasound-modulated twin-fluid atomization not only verifies the capillary wave mechanism but also provides a means for controlling the drop-size and size distributions in twin-fluid atomization, which has a variety of applications in fuel combustion, spray drying, and spray coating.
机译:提出了共振液体毛细管波理论,该理论将泰勒的色散关系扩展到包括由气流引起的液体表面倾斜的遮挡作用。将所得的分散曲线与新的实验结果进行了比较,该实验结果是在恒定运动粘度为2 cSt的空气喷射和超声调节双流体雾化中,液滴尺寸和尺寸分布如何随表面张力和空气速度变化。毛细管波的相对增长率的理论预测与液滴尺寸和尺寸分布的实验结果之间的良好一致性导致得出以下结论:毛细管波的泰勒模式破裂在双流体(气流)雾化中起着非常重要的作用液体射流。因此,超声调制的双流体雾化不仅验证了毛细管波机理,而且还提供了一种控制双流体雾化中液滴尺寸和尺寸分布的方法,在燃料燃烧,喷雾干燥,和喷涂。

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