Dynamics of micro-bubble sonication inside a phantom vessel

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Abstract

A model for sonicated micro-bubble oscillations inside a phantom vessel is proposed. The model is not a variant of conventional Rayleigh-Plesset equation and is obtained from reduced Navier-Stokes equations. The model relates the micro-bubble oscillation dynamics with geometric and acoustic parameters in a consistent manner. It predicts micro-bubble oscillation dynamics as well as micro-bubble fragmentation when compared to the experimental data. For large micro-bubble radius to vessel diameter ratios, predictions are damped, suggesting breakdown of inherent modeling assumptions for these cases. Micro-bubble response with acoustic parameters is consistent with experiments and provides physical insight to the micro-bubble oscillation dynamics. © 2013 American Institute of Physics.

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Qamar, A., Samtaney, R., & Bull, J. L. (2013). Dynamics of micro-bubble sonication inside a phantom vessel. Applied Physics Letters, 102(1). https://doi.org/10.1063/1.4773909

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