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JOURNALS // Matematicheskoe modelirovanie // Archive

Mat. Model., 2025 Volume 37, Number 5, Pages 173–192 (Mi mm4643)

Computation of aeroacoustic resonance characteristics in low-speed turbulent flow around a spherical resonator

A. S. Stabnikova, I. A. V’yushkinab, E. V. Glazunovac, A. A. Deulinc, D. A. Niculina, A. K. Travina

a Peter the Great St.Petersburg Polytechnic University, Saint-Petersburg
b A.V. Gaponov-Grekhov Institute of Applied Physics of the RAS, Nizhny Novgorod
c All-Russian Research Institute of Experimental Physics, Sarov

Abstract: Computations of a subsonic flow over a spherical resonator placed in a straight duct are performed with the use of the hybrid scale-resolving RANS-LES approach DDES in combination with various methods for preventing the reflection of pressure disturbances from the permeable boundaries of the computational domain. It is shown that the use of a combination of characteristic boundary conditions in the inlet section of the duct with a near-boundary absorbing layer in the vicinity of its outlet section or absorbing layers in the vicinity of the both permeable boundaries virtually completely eliminates false reflections from the boundaries. The results obtained with these boundary treatments are in good agreement with experimental data both in terms of the frequency and amplitude of the aeroacoustic resonance occurring in the flow past the resonator and in the broadband part of the pressure fluctuations spectrum inside its cavity.

Keywords: numerical simulation, spherical resonator, aeroacoustic resonance, hybrid RANS-LES approach, method DDES, nonreflecting boundary conditions.

Received: 17.04.2025
Revised: 22.05.2025
Accepted: 17.06.2025

DOI: 10.20948/mm-2025-05-11



© Steklov Math. Inst. of RAS, 2026