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The Sound Produced by a Dripping Tap is Driven by Resonant Oscillations of an Entrapped Air Bubble

机译:滴水龙头产生的声音是由气泡的共振引起的

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摘要

This paper details an investigation into the characteristic ‘plink’ sound produced by water droplets impacting a liquid surface, such as those falling from a dripping tap. Modern high-speed video and audio capture techniques have been applied to this problem for the first time. Previous literature investigating the underwater sound produced has been validated, with the key sound producing feature both above and below the water confirmed to be the entrainment of a small underwater air bubble. Recorded sound frequencies have been shown to align with the theoretical natural oscillation frequency of the entrained bubble, confirming this to be the driver of the characteristic ‘plink’ sound. For the first time these oscillations of the entrained bubble have been directly observed on video footage. An investigation into the effect of underwater reverberation showed that the airborne sound field is not simply the underwater field propagating through the water-air interface, as had previously been assumed. An alternative hypothesis is that the oscillating bubble induces oscillations of the water surface itself, giving a more efficient mechanism by which the underwater bubble drives the airborne sound field. A model for this new hypothesis produces good agreement with experimental data.
机译:本文详细研究了水滴撞击液体表面(例如那些从滴头落下的水滴)所产生的典型“叮叮”声。现代高速视频和音频捕获技术已首次应用于此问题。先前的调查所产生的水下声音的文献已经得到验证,并且在水的上方和下方都具有关键的声音产生特征,这被认为是夹带了一个小的水下气泡。记录的声音频率已经显示出与所夹带的气泡的理论固有振动频率一致,从而确认这是特征性“ plink”声音的驱动力。第一次在视频镜头上直接观察到夹带气泡的这些振荡。对水下混响效果的研究表明,空中声场不仅仅是像以前假设的那样通过水-空气界面传播的水下声场。另一种假设是,振荡气泡会引起水面本身的振荡,从而提供一种更有效的机制,水下气泡可通过该机制来驱动空气传播的声场。这个新假设的模型与实验数据产生了很好的一致性。

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