2023
DOI: 10.1063/5.0166246
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Extraction and characteristic analysis of the nonlinear acoustic impedance of circular orifices

Kangjian Han,
Zhenlin Ji,
Yiliang Fan

Abstract: For investigating the nonlinear acoustic behavior of circular orifices under high amplitude sound excitation, an approach based on the three-dimensional time-domain computational fluid dynamics simulation is proposed to extract the nonlinear acoustic impedance of circular orifices. By solving laminar flow equations, the propagation of the acoustic signal in the vicinity of orifice is simulated, and the effect of the interaction among adjacent orifices is considered by using the lateral periodic boundary condit… Show more

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Cited by 5 publications
(1 citation statement)
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“…At M = 0.15, even the 155 dB sound excitation cannot generate an obvious nonlinear effect on the acoustic attenuation behavior of silencer S-3. Both high speed flow 26 and high amplitude excitation 29 may lead to the increase of acoustic resistance of perforations, which cause the similar variation trend of transmission loss shown in Figs. 9(a) and (c); however, the mechanisms are different.…”
Section: Transmission Loss Under Pure Tone Sound Excitationsmentioning
confidence: 63%
“…At M = 0.15, even the 155 dB sound excitation cannot generate an obvious nonlinear effect on the acoustic attenuation behavior of silencer S-3. Both high speed flow 26 and high amplitude excitation 29 may lead to the increase of acoustic resistance of perforations, which cause the similar variation trend of transmission loss shown in Figs. 9(a) and (c); however, the mechanisms are different.…”
Section: Transmission Loss Under Pure Tone Sound Excitationsmentioning
confidence: 63%