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- W3017072272 endingPage "115373" @default.
- W3017072272 startingPage "115373" @default.
- W3017072272 abstract "In this work, we present a solution to the acoustic scattering problem by a fluidic sphere. The method is based on multipole expansion coefficients for a general acoustic field, which is applied to two common acoustic fields: stationary waves and arbitrarily located Bessel beams of orders m = 0 and m = 1. We present a new solution for the acoustic radiation force in terms of pressure and velocity instead of velocity potentials that are in agreement with these formulations. The behavior of the acoustic force and scattering is in agreement to the Rayleigh, Mie–like and Geometric scattering regimes. Results for force in the stationary pressure waves, typical for acoustic levitation trap, show nodes where small particles can be trapped by a restoring acoustic force. For the acoustic Bessel beam considered, the resulting force vectors point towards the corresponding intensity rings." @default.
- W3017072272 created "2020-04-24" @default.
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- W3017072272 creator A5037245473 @default.
- W3017072272 date "2020-08-01" @default.
- W3017072272 modified "2023-10-16" @default.
- W3017072272 title "Acoustic scattering and forces on an arbitrarily sized fluid sphere by a general acoustic field" @default.
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- W3017072272 doi "https://doi.org/10.1016/j.jsv.2020.115373" @default.
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