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拉伸涡中空化气泡的声发射。

The acoustic emissions of cavitation bubbles in stretched vortices.

机构信息

Department of Mechanical Engineering, University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

J Acoust Soc Am. 2011 Nov;130(5):3209-19. doi: 10.1121/1.3626121.

Abstract

Pairs of unequal strength, counter-rotating vortices were produced in order to examine the inception, dynamics, and acoustic emission of cavitation bubbles in rapidly stretching vortices. The acoustic signatures of these cavitation bubbles were characterized during their inception, growth, and collapse. Growing and collapsing bubbles often produced a sharp, broadband, pop sound. The spectrum of these bubbles, and the peak resonant frequency can generally be related to quiescent flow bubble dynamics and corresponding resonant frequencies. However, some elongated cavitation bubbles produced a short tonal burst, or chirp, with frequencies on the order of a few kilohertz. Theses frequencies are too low to be related to resonant frequencies of a bubble in a quiescent flow. Instead, the frequency content of the acoustic signal during bubble inception and growth is related to the volumetric oscillations of the bubble while it interacted with vortical flow that surrounds the bubble (i.e., the resonant frequency of the vortex-bubble system). A relationship was determined between the observed peak frequency of the oscillations, the highly stretched vortex properties, and the water nuclei content. It was found that different cavitation spectra could relate to different flow and fluid properties and therefore would not scale in the same manner.

摘要

为了研究在快速拉伸涡中空化气泡的起始、动力学和声发射,产生了一对强度不等、反向旋转的涡。在气泡的起始、生长和溃灭过程中,对这些空化气泡的声信号特征进行了研究。生长和溃灭的气泡通常会产生尖锐、宽带的爆裂声。这些气泡的频谱和峰值共振频率通常可以与静止流气泡动力学和相应的共振频率相关联。然而,一些拉长的空化气泡会产生短促的音调爆裂声或啁啾声,其频率约为几千赫兹。这些频率与静止流中气泡的共振频率无关。相反,在气泡起始和生长过程中,声信号的频率与气泡的体积振动有关,而这种体积振动与包围气泡的涡旋流相互作用(即,涡-泡系统的共振频率)。确定了观察到的振动峰值频率、高度拉伸的涡特性和水核含量之间的关系。结果发现,不同的空化谱可能与不同的流动和流体特性有关,因此不会以相同的方式进行缩放。

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