RUS  ENG
Full version
JOURNALS // Zhurnal Srednevolzhskogo Matematicheskogo Obshchestva // Archive

Zhurnal SVMO, 2020 Volume 22, Number 3, Pages 333–351 (Mi svmo776)

Applied mathematics and mechanics

Modeling of acoustic fields during gas flow around bodies

A. R. Bagapov, R. V. Zhalnin

Ogarev Mordovia State University, Saransk

Abstract: The article describes the modeling of the acoustic field based on the analysis of pressure fluctuations. For this a model based on the laws of mass, energy and momentum is implemented in a two-dimensional setting. For the calculations, the HLLC scheme for solving the Rieman problem and the WENO scheme for reconstructing the gas-dynamic parameters on the faces between the cells are used. To simulate the acoustic field, a time-averaged characteristic was chosen - the overall sound pressure level (OASPL). The paper considers the acoustic field obtained when a gas flows around a single square body, a cascade of square bodies, a step and a cavity, an interpretation of the ongoing processes is given. The result of the study is the visualization and description of the phenomena that arise when a gas flow around bodies, as well as the study of the effect of removing the observation point on acoustic effects within the simulated area.

Keywords: gas dynamics, HLLC, WENO, acoustic field, acoustic noise, OASPL.

UDC: 519.6

MSC: 76N15

DOI: 10.15507/2079-6900.22.202003.333-351



Bibliographic databases:


© Steklov Math. Inst. of RAS, 2024