Suppr超能文献

在快速变化压力场中模拟空化现象——应用于小型超声变幅杆

Modeling cavitation in a rapidly changing pressure field - application to a small ultrasonic horn.

作者信息

Žnidarčič Anton, Mettin Robert, Dular Matevž

机构信息

Laboratory for Water and Turbine Machines, University of Ljubljana, Aškerčeva 6, 1000 Ljubljana, Slovenia.

Christian Doppler Laboratory for Cavitation and Micro-Erosion, Drittes Physikalisches Institut Universität Göttingen, Friedrich-Hund-Platz 1, 37077 Göttingen, Germany.

出版信息

Ultrason Sonochem. 2015 Jan;22:482-92. doi: 10.1016/j.ultsonch.2014.05.011. Epub 2014 May 22.

Abstract

Ultrasonic horn transducers are frequently used in applications of acoustic cavitation in liquids. It has been observed that if the horn tip is sufficiently small and driven at high amplitude, cavitation is very strong, and the tip can be covered entirely by the gas/vapor phase for longer time intervals. A peculiar dynamics of the attached cavity can emerge with expansion and collapse at a self-generated frequency in the subharmonic range, i.e. below the acoustic driving frequency. The term "acoustic supercavitation" was proposed for this type of cavitation Žnidarčič et al. (2014) [1]. We tested several established hydrodynamic cavitation models on this problem, but none of them was able to correctly predict the flow features. As a specific characteristic of such acoustic cavitation problems lies in the rapidly changing driving pressures, we present an improved approach to cavitation modeling, which does not neglect the second derivatives in the Rayleigh-Plesset equation. Comparison with measurements of acoustic supercavitation at an ultrasonic horn of 20kHz frequency revealed a good agreement in terms of cavity dynamics, cavity volume and emitted pressure pulsations. The newly developed cavitation model is particularly suited for simulation of cavitating flow in highly fluctuating driving pressure fields.

摘要

超声变幅杆换能器常用于液体中的声空化应用。据观察,如果变幅杆尖端足够小并以高振幅驱动,空化现象会非常强烈,并且在较长时间间隔内,尖端会完全被气相/汽相覆盖。附着空化泡会出现一种特殊的动力学现象,在亚谐波范围内(即低于声驱动频率)以自生频率进行膨胀和坍缩。Žnidarčič等人(2014年)[1]针对这种空化类型提出了“声超空化”这一术语。我们针对此问题测试了几种已有的流体动力空化模型,但没有一个能够正确预测流动特性。由于此类声空化问题的一个特定特征在于驱动压力快速变化,我们提出了一种改进的空化建模方法,该方法在瑞利 - 普莱斯方程中不会忽略二阶导数。与在20kHz频率超声变幅杆处的声超空化测量结果进行比较,发现在空化泡动力学、空化泡体积和发射压力脉动方面具有良好的一致性。新开发的空化模型特别适用于模拟在高度波动的驱动压力场中的空化流动。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验