Condition of resonant break-up of gas bubbles by an acoustic wave in liquid
- Авторы: Vanovskiy V.V.1,2, Petrov A.G.1,2
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Учреждения:
- Moscow Institute of Physics and Technology (State University)
- Ishlinskii Institute for Problems in Mechanics
- Выпуск: Том 61, № 7 (2016)
- Страницы: 316-320
- Раздел: Physics
- URL: https://journals.rcsi.science/1028-3358/article/view/191393
- DOI: https://doi.org/10.1134/S1028335816070090
- ID: 191393
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Аннотация
The linear theory of damping of radial vibrations of a bubble in a liquid is constructed by taking into account the key dissipative mechanisms: thermal, viscous, and acoustic. The basic approximation of homobaricity made helps to obtain the results in a convenient and simple form. The results obtained for damping are used further in the description of the forced resonant oscillations of a bubble in an acoustic wave with the frequency equal to the eigenfrequency of the radial oscillation mode and twice as high as the frequency of the deformation oscillation mode (resonance 2:2:1). It is shown that the amplitude of deformation oscillations, which is reasonably large for breaking, is developed at a relatively small pressure amplitude of the exciting acoustic wave, and subharmonics arise in the acoustic-emission spectrum. The condition of bubble break-up is obtained for a fast and slow start of the acoustic wave.
Об авторах
V. Vanovskiy
Moscow Institute of Physics and Technology (State University); Ishlinskii Institute for Problems in Mechanics
Автор, ответственный за переписку.
Email: vovici@gmail.com
Россия, Dolgoprudnyi, Moscow oblast, 141700; Moscow, 117526
A. Petrov
Moscow Institute of Physics and Technology (State University); Ishlinskii Institute for Problems in Mechanics
Email: vovici@gmail.com
Россия, Dolgoprudnyi, Moscow oblast, 141700; Moscow, 117526
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