文章摘要
吴博悦,陈毅,李建成.超声清洗装置空化噪声谱分析法空化噪声级测量[J].,2022,41(2):318-326
超声清洗装置空化噪声谱分析法空化噪声级测量
Measurement of cavitation noise level by spectral analysis of cavitation noise in ultrasonic cleaning device
投稿时间:2021-03-17  修订日期:2022-03-01
中文摘要:
      空化强度是用以衡量液体介质中空化活动的剧烈程度,同时空化效应在超声清洗中起关键作用,因此,测量超声清洗槽中的空化强度便可了解其中空化活动的情况。当发生空化时,液体介质中会产生成分复杂空化噪声,对空化噪声谱进行分析和计算得到空化噪声级,据此可判断空化强度。试验测得大超声清洗装置内稳态空化分布广泛、均匀,瞬态空化分布集中;小超声清洗槽内稳态空化与瞬态空化都分布均匀。空化噪声级空间平均可以较好的表示小超声清洗槽声场环境中的整体空化强度;但对于大超声清洗装置声场环境,空化噪声级空间平均可以表示稳态空化强度,而瞬态空化强度的测量需要选则需要在发生瞬态空化的区域测量。
英文摘要:
      Cavitation intensity is used to measure the intensity of cavitation in liquid medium and cavitation effect plays a key role in ultrasonic cleaning, therefore, the cavitation activity can be known by measuring the cavitation intensity in the ultrasonic cleaning bath. When cavitation occurs, complex cavitation noise will be produced in liquid medium. The cavitation noise level can be obtained by analyzing and calculating the cavitation noise spectrum, then the cavitation intensity can be judged. The experimental results show that the steady cavitation distribution in the large ultrasonic cleaning device is extensive and uniform, and the transient cavitation distribution is concentrated; the steady cavitation and transient cavitation distribution in the small ultrasonic cleaning bath are uniform. The spatial average of cavitation noise level can better represent the overall cavitation intensity in the sound field environment of small ultrasonic cleaning tank; but for the sound field environment of large ultrasonic cleaning device, the spatial average of cavitation noise level can represent the steady cavitation intensity, and the transient cavitation intensity should be measured in the area where transient cavitation occurs.
DOI:10.11684/j.issn.1000-310X.2022.02.019
中文关键词: 超声清洗,空化噪声级,空化强度,瞬态空化,稳态空化
英文关键词: Ultrasonic cleaning, cavitation noise level, cavitation intensity, transient cavitation, steady cavitation
基金项目:
作者单位E-mail
吴博悦 杭州应用声学研究所 heinzrommelwby@163.com 
陈毅* 杭州应用声学研究所 y.chen @163.com 
李建成 杭州应用声学研究所  
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