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August 1, 2025The Journal of the Acoustical Society of America0 citations

Sound amplitude of discrete bubbles entrained by a breaking wave

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FNFilippo NelliDTDanica TóthováAOAndrew Ooi

Key Points

  • Larger bubbles produce louder sounds, enhancing our understanding of gas exchange dynamics.
  • The polynomial relationship suggests a direct connection between bubble size and sound intensity in marine environments.
  • Analysis involved controlled experiments with focused breaking waves and synchronized audio-visual data collection.
  • Findings may influence methods for estimating bubble size distributions, important for climate regulation.

Abstract

The exchange of gases between the ocean and the atmosphere plays a major role in regulating global climate, influencing processes like carbon sequestration and the balance of atmospheric gases. This paper investigates the acoustic emissions generated from the bubbles produced by breaking waves and analyzes the relationship between bubble diameter and sound intensity. This relationship is important for estimating bubble size distributions and thus achieving a better understanding of the gas exchange between ocean and atmosphere. Experiments were conducted in a controlled laboratory setting, generating linear focused breaking waves. High-speed cameras and four hydrophones captured synchronised audio and video data from bubble formation and acoustic emission events. Results are characterized by a polynomial relationship between bubble size and acoustic emission, showing that larger bubbles produced louder sounds. This behaviour is consistent with underwater bubbles generated from other, more fundamental mechanisms, such as underwater nozzles and plunging water streams and jets.

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Cite This Study

Nelli et al. (2025) studied this question.

synapsesocial.com/papers/68af5d6fad7bf08b1eae0dfahttps://doi.org/10.1121/10.0039053
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