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Published in: Acoustical Physics 6/2023

01-12-2023 | ATMOSPHERIC AND AEROACOUSTICS

Local Method for Separating Sound and Pseudosound Pressure Fluctuations

Authors: O. P. Bychkov, G. A. Faranosov

Published in: Acoustical Physics | Issue 6/2023

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Abstract

A new method for separating acoustic and pseudosound pressure fluctuations is proposed, based on analysis of signals at a pair of closely located points, so that the total size of the measurement zone is much smaller than the correlation scale of pseudosound perturbations. It is suggested that hydrodynamic fluctuations propagate at a velocity significantly lower than the sound velocity and obey the “frozen-in” perturbation model, which makes it possible, in real time or during data postprocessing, to convert the spatial derivative of the signal into a temporal derivative, which, after time integration, yields an estimate for pseudosound perturbations at the measurement point. A theoretical model of the approach and test results using model examples and numerical simulation data are presented.

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Metadata
Title
Local Method for Separating Sound and Pseudosound Pressure Fluctuations
Authors
O. P. Bychkov
G. A. Faranosov
Publication date
01-12-2023
Publisher
Pleiades Publishing
Published in
Acoustical Physics / Issue 6/2023
Print ISSN: 1063-7710
Electronic ISSN: 1562-6865
DOI
https://doi.org/10.1134/S1063771023600390

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