ACOUSTIC EMISSION OF WATER DROPS IMPACTING ON A HEATED SURFACE

Акустическое излучение капель воды при ударе о нагретую поверхность
Volfango Bertola
2024-01-01

acoustic emissionheated surfaceimpact morphologyspectral featureswater drop impact
The sound generated by the impact of water drops on heated surfaces is studied experimentally, with the purpose to identify the sound features characteristic of the various impact morphologies. Although the sound of drops impacting on liquid surfaces has been investigated extensively, little attention was given to the sound of drops on solid, heated surfaces. The identification of sound features specific to different impact morphologies would enable the impact regime recognition without the need of high-speed imaging visual inspection and can be used to train machine learning algorithms for automatic impact regime detection. Water drops were generated from a hypodermic needle suspended above a polished aluminum surface at temperatures between 100 and 400°C, with impact Weber numbers ranging from 30 to 150. The sound generated upon impact was captured by a supercardioid condenser microphone and compared to high-speed video recordings of the impact. Results suggest different impact morphologies generate a sound with distinctive spectral features.
1
Distinctive acoustic signatures can potentially enable impact-regime recognition without high-speed imaging and support training of machine learning classifiers for automatic detection.
2
Experiments used water drops impacting polished aluminum at 100–400°C and Weber numbers 30–150, with sound recorded by a supercardioid condenser microphone and validated by high-speed video.
3
Impact sounds of water drops on heated solid surfaces exhibit distinctive spectral features that correlate with different impact morphologies.
4
Prior work focused on drops on liquid surfaces; this study provides experimental evidence specifically for sound from drops on solid heated surfaces.

Water drops impacting a heated polished aluminum surface

Acoustic emission characteristics (spectral features) produced by different impact morphologies of the drops, and their relation to impact regimes

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2024-01-01
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Volfango Bertola
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