Characteristic of cavitation bubbles and shock waves generated by pulsed electric discharges with different voltages

D. Oshita, S. Hosseini, Y. Okuka, Y. Miyamoto, H. Akiyama
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引用次数: 3

Abstract

In the cases that underwater pulsed electric discharges should be applied with high repetition rates, such as medical applications, characteristic of the generated cavitation bubble and shock waves should be considered. In our previous research, underwater shock waves focusing by pulsed discharges using a magnetic pulse compression unit (MPC) were studied. In this paper, effects of pulsed electric discharge parameters, like voltage amplitude and pulse duration, on the characteristic of cavitation bubbles and shock waves were visualized and analyzed. Pulsed discharge shock waves and cavitations were produced by using a MPC unit. The water was degassed by a vacuum pump in order to eliminate the influence of dissolved air. In order to prevent electrical discharge oscillation and to increase the electrode life time, degassed saline electrolyte was used. The whole sequences of shock wave generation by discharge plasma, bubble growth, bubble collapse, and secondary shock wave generation near the electrode were visualized by time-resolved high speed shadowgraph method. Using the visualization results and image analysis, radius and collapse time of cavitation bubbles and their shock waves pressures were evaluated.
不同电压脉冲放电产生的空化气泡和激波特性
在水下脉冲放电需要高重复率应用的情况下,如医疗应用,应考虑产生的空化泡和冲击波的特性。在以往的研究中,我们利用磁脉冲压缩装置(MPC)研究了脉冲放电对水下冲击波的聚焦。分析了电压幅值和脉冲持续时间等脉冲放电参数对空化气泡和冲击波特性的影响。利用MPC装置产生脉冲放电冲击波和空化现象。为了消除溶解空气的影响,用真空泵对水进行除气。为防止放电振荡,延长电极寿命,采用脱气盐水电解质。采用时间分辨高速影法对放电等离子体产生激波、气泡生长、气泡破裂和电极附近二次激波产生的全过程进行了可视化。利用可视化结果和图像分析,对空化气泡的半径、坍缩时间及其冲击波压力进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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