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Collapse and rebound of a laser-induced cavitation bubble

Physics of Fluids · 2001 · Vol. 13(10) · pp. 2805–2819
Iskander AkhatovOlgert LindauA.S. TopolnikovRobert MettinN. K. VakhitovaWerner Lauterborn

Abstract

A strong laser pulse that is focused into a liquid produces a vapor cavity, which first expands and then collapses with subsequent rebounds. In this paper a mathematical model of the spherically symmetric motion of a laser-induced bubble is proposed. It describes gas and liquid dynamics including compressibility, heat, and mass transfer effects and nonequilibrium processes of evaporation and condensation on the bubble wall. It accounts also for the occurrence of supercritical conditions at collapse. Numerical investigations of the collapse and first rebound have been carried out for different bubble sizes. The results show a fairly good agreement with experimental measurements of the bubble radius evolution and the intensity of the outgoing shock wave emitted at collapse. Calculations with a small amount of noncondensable gas inside the bubble show its strong influence on the dynamics.

Ultrasound and Cavitation PhenomenaLaser-Ablation Synthesis of NanoparticlesPhysicsBubbleShock waveCavitationMechanicsCompressibilityCondensationShock (circulatory)RADIUSEvaporation
Citations
461
FWCI
3.93
field-weighted impact
References
60
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94%
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References
Sonoluminescence and bubble dynamics for a single, stable, cavitation bubble
The Journal of the Acoustical Society of America · 1992 · 776 citations
Zur Gittertheorie der Ionenkristalle
The European Physical Journal A · 1932 · 928 citations
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