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声空化噪声谱分析:周期性冲击波的作用。

An analysis of the acoustic cavitation noise spectrum: The role of periodic shock waves.

作者信息

Song Jae Hee, Johansen Kristoffer, Prentice Paul

机构信息

Cavitation Laboratory, School of Engineering, University of Glasgow, Glasgow G12 8QQ, United Kingdom.

出版信息

J Acoust Soc Am. 2016 Oct;140(4):2494. doi: 10.1121/1.4964633.

Abstract

Research on applications of acoustic cavitation is often reported in terms of the features within the spectrum of the emissions gathered during cavitation occurrence. There is, however, limited understanding as to the contribution of specific bubble activity to spectral features, beyond a binary interpretation of stable versus inertial cavitation. In this work, laser-nucleation is used to initiate cavitation within a few millimeters of the tip of a needle hydrophone, calibrated for magnitude and phase from 125 kHz to 20 MHz. The bubble activity, acoustically driven at f = 692 kHz, is resolved with high-speed shadowgraphic imaging at 5 × 10 frames per second. A synthetic spectrum is constructed from component signals based on the hydrophone data, deconvolved within the calibration bandwidth, in the time domain. Cross correlation coefficients between the experimental and synthetic spectra of 0.97 for the f/2 and f/3 regimes indicate that periodic shock waves and scattered driving field predominantly account for all spectral features, including the sub-harmonics and their over-harmonics, and harmonics of f.

摘要

关于声空化应用的研究,通常是根据空化发生期间收集的发射光谱中的特征来报道的。然而,除了对稳定空化与惯性空化的二元解释之外,对于特定气泡活动对光谱特征的贡献,人们的了解还很有限。在这项工作中,利用激光成核在针式水听器尖端几毫米范围内引发空化,该水听器在125千赫至20兆赫范围内进行了幅度和相位校准。以692千赫的频率进行声学驱动的气泡活动,通过每秒5×10帧的高速阴影成像来解析。基于水听器数据,在时域内在校准带宽内进行去卷积,从分量信号构建合成光谱。在f/2和f/3模式下,实验光谱与合成光谱之间的互相关系数为0.97,这表明周期性冲击波和散射驱动场主要解释了所有光谱特征,包括次谐波及其超谐波以及f的谐波。

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