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INFLUENCE OF SURFACTANTS ON BUBBLE ENTRAPMENT

机译:表面活性剂对气泡包埋的影响

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A drop impacting on a liquid surface may entrain a bubble resulting in sounds from the bubble oscillation in addition to that of the initial drop impact. This subject has received considerable interest with respect to the underwater sound produced by rain. The previous optical and acoustical studies have extensively examined the role of drop size and impact velocity as well entrainment formation mechanisms. However, the role of surfactants on the liquid surface has received less attention especially with respect to sound production. One previous study [1] of two different surfactants (Kodak Photoflo and a sulfo detergent) reports that these suppress entrainment resulting in diminished or negligible bubble noise. However, we have found bubble entrainment and acoustic emissions associated with the addition of a heptane layer on the water surface. Using a synchronized hydrophone and a high-speed camera, acoustical and optical data of the bubble drop dynamics were obtained. Particle image ve-locimetry (P1V) was also utilized to measure the surface velocity produced by the drop. These results show a significant difference in the drop rebound and subsequent fluid column dynamics, which results in a dual acoustic emission for the surfactant case.
机译:撞击在液体表面上的水滴可能会夹带气泡,除了最初的水滴撞击之外,还会导致气泡振荡产生声音。对于由雨产生的水下声音,该主题已经引起了相当大的兴趣。先前的光学和声学研究已经广泛研究了液滴大小和撞击速度以及夹带形成机制的作用。然而,表面活性剂在液体表面上的作用受到的关注较少,特别是在声音产生方面。先前对两种不同表面活性剂(柯达Photoflo和磺基去污剂)的研究[1]报告说,这些表面活性剂抑制了夹带,导致气泡噪音降低或可忽略不计。但是,我们发现与在水表面添加庚烷层相关的气泡夹带和声发射。使用同步水听器和高速摄像机,可以获得气泡下落动力学的声学和光学数据。粒子图像测速仪(P1V)也用于测量液滴产生的表面速度。这些结果表明液滴回弹和随后的流体柱动力学有显着差异,这导致表面活性剂情况产生双重声发射。

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