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Visualization of Bubble Dynamics in a Spark-Based Underwater Sound Source by means of High-Speed Cinematography

机译:通过高速电影摄影,在火花基水下声源中的泡沫动力学可视化

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The first direct visualization of cavitation phenomena in high-power paraboloidal spark-based sound sources is presented. The growth and collapse of a vapour bubble generated by an electric spark in water was recorded by means of high-speed cinematography, simultaneously detecting the acoustic signature. Films show that after the very first cycles there is a transition from a collapsing/rebounding bubble regime to a pulsating bubble regime, suggesting that during this time the bubble contents may vary considerably. Measured bubble sizes and collapse times for the first cycle are in substantial agreement with the model of bubble collapse first formulated by Lord Rayleigh. The energy conversion into sound is evaluated by considering the decrease of maximum radius between successive bubble cycles. The acoustic efficiency so obtained is consistent with values derived from purely acoustic data.
机译:介绍了高功率抛物面火花的声源中空化现象的第一次直接可视化。通过高速电影,通过高速摄影,通过高速摄影来记录由水中的电火花产生的蒸汽泡的生长和崩溃。同时检测声学签名。薄膜表明,在第一个循环之后,从折叠/篮板气泡制度到脉动气泡制度的过渡,表明在此期间,气泡内容可能很大。第一周期的测量泡沫尺寸和崩溃时间与由Rayleigh主首次制定的泡沫崩溃模型进行了重大协议。通过考虑连续气泡循环之间的最大半径的降低来评估能量转换。如此获得的声学效率与纯粹声学数据导出的值一致。

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