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- W2030422021 abstract "Equations resembling the Rayleigh-Plesset and Keller-Miksis equations are frequently used to model bubble dynamics in confined spaces, using the standard inertial term RR¨+3R·2/2, where R is the bubble radius. This practice has been widely assumed to be defensible if the bubble is much smaller than the radius of the confining vessel. This paper questions this assumption, and provides a simple rigid wall model for worst-case quantification of the effect on the inertial term of the specific confinement geometry. The relevance to a range of scenarios (including bubbles confined in microfluidic devices; or contained in test chambers for insonification or imaging; or in blood vessels) is discussed." @default.
- W2030422021 created "2016-06-24" @default.
- W2030422021 creator A5074159699 @default.
- W2030422021 date "2011-11-01" @default.
- W2030422021 modified "2023-09-25" @default.
- W2030422021 title "The inertial terms in equations of motion for bubbles in tubular vessels or between plates" @default.
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- W2030422021 doi "https://doi.org/10.1121/1.3638132" @default.
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