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Computational analysis of double-bubble ultrasonic cavitation
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Double-bubble ultrasonic cavitation dynamic differential equation obtained from superposition principle is normalized. MATLAB is used to analyse the effects of bubble linearity, double-bubble distance, sound frequency, sound pressure amplitude on cavitation process. Bifrequency ultrasound is introduced into the equation under discussion in this article. The calculation results show that bubble linearity is a main factor, which determines cavitation characteristics. The effect of sound pressure is strongest, and the frequency effect is the next strongest. Double bubble interactions affect cavitation characteristics to a certain extent, which reduces with distance increasing. Bifrequency ultrasound has a limited effect on cavitation characteristics, and it turns biggest when two component pressure amplitudes are equal.
Acta Physica Sinica, Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences
Title: Computational analysis of double-bubble ultrasonic cavitation
Description:
Double-bubble ultrasonic cavitation dynamic differential equation obtained from superposition principle is normalized.
MATLAB is used to analyse the effects of bubble linearity, double-bubble distance, sound frequency, sound pressure amplitude on cavitation process.
Bifrequency ultrasound is introduced into the equation under discussion in this article.
The calculation results show that bubble linearity is a main factor, which determines cavitation characteristics.
The effect of sound pressure is strongest, and the frequency effect is the next strongest.
Double bubble interactions affect cavitation characteristics to a certain extent, which reduces with distance increasing.
Bifrequency ultrasound has a limited effect on cavitation characteristics, and it turns biggest when two component pressure amplitudes are equal.
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