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JOURNALS // Matematicheskoe modelirovanie // Archive

Mat. Model., 2021 Volume 33, Number 10, Pages 96–108 (Mi mm4329)

This article is cited in 3 papers

Numerical simulation of sound pressure for calibration system of LS type measurement microphones

D. V. Golovin

All-Russian Scientific Research Institute for Physical-Engineering and Radiotechnical Metrology

Abstract: The are presented the results of sound pressure modeling at calibration system of LS type measurement microphones, based on the reciprocity method, using quasi-gas dynamic (QGD) approach at the frequency range from $1$ Hz to $10$ kHz. The numerical method based on QGD equations for a compressible viscous heat-conducting gas is constructed using explicit scheme, the finite difference method for a uniform grid with the approximation of spatial derivatives through central differences, and using the fictious domain method to approximate boundary conditions. A special feature of the computational problem at the studied frequency range is extremely low Mach numbers with the value from $7.3\cdot10^{-10}$ to $7.3\cdot10^{-6}$. The good agreement of the simulation results with the known analytical solution proves the applicability of the QGD approach for gas flow simulations with extremely low Mach numbers and problems of acoustics in particular.

Keywords: reciprocity method, measurement microphones, quasi-gas-dynamic equations, low Mach numbers.

Received: 27.05.2021
Revised: 27.05.2021
Accepted: 30.08.2021

DOI: 10.20948/mm-2021-10-07


 English version:
Mathematical Models and Computer Simulations, 2022, 14:3, 419–426

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© Steklov Math. Inst. of RAS, 2025