Numerical study of features propagation of acoustic disturbances in unregulated supersonic air intake
Matematičeskoe modelirovanie, Tome 35 (2023) no. 10, pp. 19-35.

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With the help of the «Vortex Tracker» program, a number of calculations were carried out to identify the peculiarities of the propagation of acoustic disturbances in the channel of a supersonic air intake with a high level of flow inhomogeneity and turbulence. The problems for a cylindrical channel with a uniform flow and a selected unregulated air intake were considered. We used productions with and without vortex-resolving approach, with and without fan perturbations. By plotting phase velocity diagrams and comparing the results of different calculations, acoustic disturbances generated by the flow and propagation fan disturbances were separated and considered. The work contains descriptions of the features of each of the components. Calculations have shown a weak influence of intense turbulence on the rate of attenuation of fan disturbances and a strong influence on their structure, including a change in frequency. It is noted that the rapid transformation of the initial structure of disturbances should affect the operation of sound-absorbing structures and the process of noise shielding by airframe elements. It should be noted that the flow in a practically acceptable air intake will be more homogeneous and less turbulent, which requires additional calculations before generalizing the conclusions.
Keywords: aeroacoustics, interaction of acoustic disturbances with turbulence, supersonic air intake, vortex-resolving calculation, transformation of acoustic disturbance.
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V. A. Shorstov. Numerical study of features propagation of acoustic disturbances in unregulated supersonic air intake. Matematičeskoe modelirovanie, Tome 35 (2023) no. 10, pp. 19-35. http://geodesic.mathdoc.fr/item/MM_2023_35_10_a1/

[1] V. G. Belova, V. A. Vinogradov, D. V. Komratov, V. A. Stepanov, “Kharakteristiki vozdukhozabornogo ustroistva sverkhzvukovogo delovogo samoleta pri imitatsii vozmushchenii”, Materialy XXX nauchno-tekhnicheskoi konferentsii po aerodinamike, posviashchennoi 150-letiiu so dnia rozhdeniia S.A. Chaplygina, 2019, 50–51

[2] V. A. Shorstov, Programma dlia EVM «Treker vikhrei i voln» (ViV Treker), Svidetelstvo No 2022661092, 15.06.2022 | Zbl

[3] A. Suresh, H. T. Huynh, “Accurate Monotonicity-Preserving Schemes with Runge-Kutta Time Stepping”, J. of Comput. Phys., 136 (1997), 83–99 | DOI | MR | Zbl

[4] V. A. Shorstov, V. E. Makarov, “Razvitie zonnogo RANS-IDDES podkhoda k modelirovaniiu obtekaniia tel s tseliu snizheniia trebovanii k vychislitelnym resursam pri reshenii zadach aeroakustiki”, Uchenye zapiski TsAGI, L:6 (2019), 41–52

[5] S. Rienstra, A. Hirschberg, An Introduction to Acoustics, Extended and revised edition of IWDE 92-06, 189–192

[6] C. L. Morfey, M. J. Fisher, “Shock-wave radiation from a supersonic ducted rotor”, Aeronaut. J., 74 (1979), 579–585 | DOI

[7] A. K. Travin, M. L. Shur, Ph. R. Spalart, M. Kh. Strelets, “Improvement of Delayed Detached-Eddy Simulation for LES with Wall Modelling”, European Conference on Computational Fluid Dynamics ECCOMAS CFD, 2006

[8] F. J. Harris, “On the use of windows for harmonic analysis with the discrete Fourier transform”, Proc. of the IEEE, 66 (1978), 51–83 | DOI

[9] D. P. Lockard, 8th AIAA/CEAS Aeroacoustics Conf. Exhibit, AIAA-2002-2580 (17 June 2002–19 June 2002, Breckenridge, Colorado)

[10] K. Viswanathan, “Aeroacoustics of hot jets”, J. of Fluid Mechanics, 516 (2004), 39–82 | DOI | Zbl

[11] V. A. Shorstov, “Possibilities and Restrictions on the Use of the Zonal RANS-IDDES Approach to Calculate Fan Noise”, Mathematical Models and Computer Simulations, 15:2 (2023), 265–276 | DOI | DOI | Zbl