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Experimental and analytical investigation of acoustic streaming generated by standing ultrasonic waves in an open boundaries

机译:在开放边界中站立超声波产生声流的实验和分析研究

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摘要

Acoustic streaming patterns, velocity fields, which is induced by a cylindrical ultrasonic exciter vibrating at 28.4 kHz in an open physical boundaries, is analytically and experimentally investigated using Particle Imaging Velocimetry (PIV). Induced acoustic streaming patterns and velocity fields for the gaps of 18 mm at which the irrotational tangential velocity becomes a maximum, resulting in a substantial increase in the acoustic streaming velocity and pronounced visualization of streaming patterns between the vibrator and quiescent glass plate are presented. The overall air flow patterns at the gaps of 24, 30, 36 mm are similar to the gap of 18 mm but as the gap increases the frequency of occurrence and irregularity of vortices in the gap appear to increase. The symmetric definite steady circular flow with local vortices is observed. The maximum streaming velocity measured stands at 0.16 cm/s with a vibration amplitude of 50 micrometers. Theoretical analysis indicates that the pattern of air flow in the gap is determined by the top and bottom limiting velocities induced by acoustic streaming within the Stokes boundary layer and that the streaming pattern is symmetrical with respect to the center axis of the vibrator by reason of symmetry. The comparison between the experimental data and the theoretical estimation based on Nyborg and Jackson is performed.
机译:使用粒子成像测速(PIV)在分析和实验上研究了由圆柱形超声激励器在开放的物理边界中以28.4 kHz振动引起的声流模式,速度场。引入的声流模式和速度场针对18mm的间隙,在该距离处,旋转切线速度变为最大,从而导致声流速度显着提高,并显示了振动器和静态玻璃板之间流模式的明显可视化。间隙为24、30、36 mm时的总体气流模式与18 mm的间隙相似,但是随着间隙的增加,出现的频率和间隙中涡流的不规则性会增加。观察到具有局部涡旋的对称确定的稳定循环流。测得的最大流速度为0.16 cm / s,振动幅度为50微米。理论分析表明,间隙中的气流模式是由斯托克斯边界层内声流引起的上下极限速度决定的,并且由于对称性,流模式相对于振子的中心轴是对称的。进行了实验数据与基于Nyborg和Jackson的理论估计之间的比较。

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