The acoustic streaming behaviour below an ultrasonic sonotrode in water was predicted by numerical simulation and validated by experimental studies. The flow was calculated by solving the transient Reynolds-Averaged Navier-Stokes equations with a source term representing ultrasonic excitation implemented from the predictions of a nonlinear acoustic model. Comparisons with the measured flow field from Particle Image Velocimetry (PIV) water experiments revealed good agreement in both velocity magnitude and direction at two power settings, supporting the validity of the model for acoustic streaming in the presence of cavitating bubbles. Turbulent features measured by PIV were also recovered by the model. The model was then applied to the techn...
The quantification of acoustic pressures in liquid metals is of paramount interest for the optimizat...
The prediction of the acoustic pressure field and associated streaming is of paramount importance to...
The prediction of the acoustic pressure field and associated streaming is of paramount importance to...
The acoustic streaming behaviour below an ultrasonic sonotrode in water was predicted by numerical s...
The acoustic streaming behaviour below an ultrasonic sonotrode in water was predicted by numerical s...
Data availability statement: The processed data required to reproduce these findings are available t...
This paper presents an investigation of the evolution of flow structures and cavitation intensity in...
To address difficulties in treating large volumes of liquid metal with ultrasound, a fundamental stu...
The application of ultrasound to industrial casting processes has attracted research interest during...
A homogeneous cavitation model, derived from the Keller–Miksis equation, is developed and applied to...
Ultrasonic cavitation treatment of melt significantly improves the downstream properties and quality...
To address difficulties in treating large volumes of liquid metal with ultrasound, a fundamental stu...
To address difficulties in treating large volumes of liquid metal with ultrasound, a fundamental stu...
The quantification of acoustic pressures in liquid metals is of paramount interest for the optimizat...
The quantification of acoustic pressures in liquid metals is of paramount interest for the optimizat...
The quantification of acoustic pressures in liquid metals is of paramount interest for the optimizat...
The prediction of the acoustic pressure field and associated streaming is of paramount importance to...
The prediction of the acoustic pressure field and associated streaming is of paramount importance to...
The acoustic streaming behaviour below an ultrasonic sonotrode in water was predicted by numerical s...
The acoustic streaming behaviour below an ultrasonic sonotrode in water was predicted by numerical s...
Data availability statement: The processed data required to reproduce these findings are available t...
This paper presents an investigation of the evolution of flow structures and cavitation intensity in...
To address difficulties in treating large volumes of liquid metal with ultrasound, a fundamental stu...
The application of ultrasound to industrial casting processes has attracted research interest during...
A homogeneous cavitation model, derived from the Keller–Miksis equation, is developed and applied to...
Ultrasonic cavitation treatment of melt significantly improves the downstream properties and quality...
To address difficulties in treating large volumes of liquid metal with ultrasound, a fundamental stu...
To address difficulties in treating large volumes of liquid metal with ultrasound, a fundamental stu...
The quantification of acoustic pressures in liquid metals is of paramount interest for the optimizat...
The quantification of acoustic pressures in liquid metals is of paramount interest for the optimizat...
The quantification of acoustic pressures in liquid metals is of paramount interest for the optimizat...
The prediction of the acoustic pressure field and associated streaming is of paramount importance to...
The prediction of the acoustic pressure field and associated streaming is of paramount importance to...