Cavitation Nuclei and Bubble Formation—A Dynamic Liquid-Solid Interface Problem
- 2 May 2000
- journal article
- Published by ASME International in Journal of Fluids Engineering
- Vol. 122 (3) , 494-498
- https://doi.org/10.1115/1.1287506
Abstract
A model of the formation of cavitation nuclei is developed assuming local detachment of the liquid at locations of concave solid surface topography. The detachment is attributed to diffusion of gas molecules into the interfacial liquid, where the liquid-solid bonds are strained due to interfacial tension in the liquid. Calculations indicate that attached interfacial voids may grow into stabilized cavitation nuclei as a consequence of broad-band resonance, excited by external sources of noise or vibration in the whole range of frequencies up to the MHz regime. The gas content in the liquid and the amplitude and frequency of the sound field determine a balance between rectified diffusion of gas into the void and diffusion out of it due to the excess pressure in the void. In strong acoustic fields and in supersaturated liquids the voids may grow into bubbles that detach and form free gas bubbles. [S0098-2202(00)01503-0]Keywords
This publication has 10 references indexed in Scilit:
- The structure of water at platinum/water interfaces Molecular dynamics computer simulationsSurface Science, 1995
- Cavitation And Bubble DynamicsPublished by Oxford University Press (OUP) ,1995
- Molecular layering of water at surfaces and origin of repulsive hydration forcesNature, 1983
- Acoustic Cavitation Thresholds in WaterPublished by Springer Nature ,1980
- Comment on Papers Concerning Rectified Diffusion of Cavitation BubblesThe Journal of the Acoustical Society of America, 1968
- Radiation-induced acoustic cavitation; apparatus and some resultsJournal of Research of the National Bureau of Standards, Section C: Engineering and Instrumentation, 1967
- On the Stability of Gas Bubbles in Liquid-Gas SolutionsThe Journal of Chemical Physics, 1950
- Limiting Negative Pressure of WaterJournal of Applied Physics, 1950
- Bubble formation in animals. I. Physical factorsJournal of Cellular and Comparative Physiology, 1944
- XVI.On musical air-bubbles and the sounds of running waterJournal of Computers in Education, 1933