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迈向参考超声空化容器:第2部分——研究25kHz超声场中惯性空化的空间变化和声压阈值

Toward a reference ultrasonic cavitation vessel: Part 2--investigating the spatial variation and acoustic pressure threshold of inertial cavitation in a 25 kHz ultrasound field.

作者信息

Hodnett Mark, Zeqiri Bajram

机构信息

Quality of Life Div., Nat. Phys. Lab., Middlesex.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Aug;55(8):1809-22. doi: 10.1109/TUFFC.2008.864.

Abstract

As part of an ongoing project to establish a reference facility for acoustic cavitation at the National Physical Laboratory (NPL), carefully controlled studies on a 25 kHz, 1.8 kW cylindrical vessel are described. Using a patented high-frequency acoustic emission detection method and a sonar hydrophone, results are presented of the spatial variation of inertial acoustic cavitation with increasing peak-negative pressure. Results show that at low operating levels, inertial acoustic cavitation is restricted to, and is strongly localized on, the vessel axis. At intermediate power settings, inertial acoustic cavitation also occurs close to the vessel walls, and at higher settings, a complex spatial variation is seen that is not apparent in measurements of the 25 kHz driving field alone. At selected vessel locations, a systematic investigation of the inertial cavitation threshold is described. This was carried out by making simultaneous measurements of the peak-negative pressures leading to inertial cavitation and the resultant MHz-frequency emissions, and indicates an inertial cavitation threshold of 101 kPa +/- 14% (estimated expanded uncertainty). However, an intermediate threshold at 84 kPa +/- 14% (estimated expanded uncertainty) is also seen. The results are discussed alongside theoretical predictions and recent experimental findings.

摘要

作为在国家物理实验室(NPL)建立声学空化参考设施的一个正在进行的项目的一部分,本文描述了对一个25kHz、1.8kW圆柱形容器进行的精心控制的研究。使用一种专利的高频声发射检测方法和一个声纳水听器,给出了随着峰值负压增加惯性声空化的空间变化结果。结果表明,在低运行水平时,惯性声空化局限于容器轴线上,并强烈集中在该轴线上。在中等功率设置下,惯性声空化也出现在靠近容器壁的位置,而在更高功率设置下,可以看到一种复杂的空间变化,这种变化在单独测量25kHz驱动场时并不明显。在选定的容器位置,描述了对惯性空化阈值的系统研究。这是通过同时测量导致惯性空化的峰值负压和由此产生的兆赫兹频率发射来进行的,结果表明惯性空化阈值为101kPa±14%(估计扩展不确定度)。然而,还观察到一个中间阈值为84kPa±14%(估计扩展不确定度)。本文将这些结果与理论预测和最近的实验发现一起进行了讨论。

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