In addition to bubble number density, bubble size distribution is an important population parameter governing the activity of acoustic cavitation bubbles. In the present paper, an iterative numerical method for equilibrium size distribution is proposed and combined to a model for bubble counting, in order to approach the number density within a population of acoustic cavitation bubbles of inhomogeneous sizing, hence the sonochemical activity of the inhomogeneous population based on discretization into homogenous groups. The composition of the inhomogeneous population is analyzed based on cavitation dynamics and shape stability at 300 kHz and 0.761 W/cm2 within the ambient radii interval ranging from 1 to 5 µm. Unstable oscillation is observ...
A numerical model of ultrasonic cavitation field is described. It is based on a phenomenological des...
International audienceKnowledge on cavitation bubble size distribution, ambient radius of bubbles is...
6 pages.-- PACS nr.: 43.35 Ei.-- Communication presented at: Forum Acusticum Sevilla 2002 (Sevilla, ...
A hyper-frequency method enabling to investigate into the bubble size distribution of a bubble cloud...
A simple bubble population model, with emphasis on the bubble–bubble coalescence, is proposed. In th...
The present paper introduces a novel semi-empirical technique for the determination of active bubble...
New method has been proposed for the estimation of size and number density distribution of oscillati...
A simple method is described for determining the size of sonoluminescence bubbles generated by acous...
The extreme environment formed during bubble collapse can cause a series of chemical reactions insid...
With many emerging applications such as chemical reactions and ultrasound therapy, acoustic cavitati...
With many emerging applications such as chemical reactions and ultrasound therapy, acoustic cavitati...
Homogeneous cavitation models usually use an average radius to predict the dynamics of all bubbles. ...
Numerical simulations of cavitation noise have been performed under the experimental conditions repo...
The research described in this paper shows that main parameter of applied researches of acoustic cav...
The occurrence of acoustic cavitation is incorporating a multitude of interdependent effects that st...
A numerical model of ultrasonic cavitation field is described. It is based on a phenomenological des...
International audienceKnowledge on cavitation bubble size distribution, ambient radius of bubbles is...
6 pages.-- PACS nr.: 43.35 Ei.-- Communication presented at: Forum Acusticum Sevilla 2002 (Sevilla, ...
A hyper-frequency method enabling to investigate into the bubble size distribution of a bubble cloud...
A simple bubble population model, with emphasis on the bubble–bubble coalescence, is proposed. In th...
The present paper introduces a novel semi-empirical technique for the determination of active bubble...
New method has been proposed for the estimation of size and number density distribution of oscillati...
A simple method is described for determining the size of sonoluminescence bubbles generated by acous...
The extreme environment formed during bubble collapse can cause a series of chemical reactions insid...
With many emerging applications such as chemical reactions and ultrasound therapy, acoustic cavitati...
With many emerging applications such as chemical reactions and ultrasound therapy, acoustic cavitati...
Homogeneous cavitation models usually use an average radius to predict the dynamics of all bubbles. ...
Numerical simulations of cavitation noise have been performed under the experimental conditions repo...
The research described in this paper shows that main parameter of applied researches of acoustic cav...
The occurrence of acoustic cavitation is incorporating a multitude of interdependent effects that st...
A numerical model of ultrasonic cavitation field is described. It is based on a phenomenological des...
International audienceKnowledge on cavitation bubble size distribution, ambient radius of bubbles is...
6 pages.-- PACS nr.: 43.35 Ei.-- Communication presented at: Forum Acusticum Sevilla 2002 (Sevilla, ...