Vortexes as systems specific to the Acoustic World

Fuente: arXiv
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Main Authors: Simaciu, Ion, Drafta, Viorel, Borsos, Zoltan, Dumitrescu, Gheorghe
Format: Preprint
Published: 2024
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author Simaciu, Ion
Drafta, Viorel
Borsos, Zoltan
Dumitrescu, Gheorghe
author_facet Simaciu, Ion
Drafta, Viorel
Borsos, Zoltan
Dumitrescu, Gheorghe
contents In this paper we study the properties of vortexes, as systems specific to the Acoustic World, using both hydrodynamic theory and the corresponding hydrodynamic Maxwell equations. According to this study, it follows that the vortex behaves like an acoustic dipole that has intrinsic/internal angular momentum. The system of two identical vortices also has orbital angular momentum and behaves, at distances much greater than the distance between the axes of the vortices, as a single vortex. With the help of Maxwell's hydrodynamic equations for the vortex we deduced the force between two vortices and obtained the expression of the equivalent mass of the vortex and the permittivity of the electroacoustic field. We also obtained and interpreted the expression for the energy density of the acoustic field. The density and pressure variations induced by the vortex cause the change in the propagation speed of the acoustic waves and the acoustic lensing property of the vortex.
format Preprint
id arxiv_https___arxiv_org_abs_2405_00052
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Vortexes as systems specific to the Acoustic World
Simaciu, Ion
Drafta, Viorel
Borsos, Zoltan
Dumitrescu, Gheorghe
General Physics
In this paper we study the properties of vortexes, as systems specific to the Acoustic World, using both hydrodynamic theory and the corresponding hydrodynamic Maxwell equations. According to this study, it follows that the vortex behaves like an acoustic dipole that has intrinsic/internal angular momentum. The system of two identical vortices also has orbital angular momentum and behaves, at distances much greater than the distance between the axes of the vortices, as a single vortex. With the help of Maxwell's hydrodynamic equations for the vortex we deduced the force between two vortices and obtained the expression of the equivalent mass of the vortex and the permittivity of the electroacoustic field. We also obtained and interpreted the expression for the energy density of the acoustic field. The density and pressure variations induced by the vortex cause the change in the propagation speed of the acoustic waves and the acoustic lensing property of the vortex.
title Vortexes as systems specific to the Acoustic World
topic General Physics
url https://arxiv.org/abs/2405.00052