Effects of Aeroelastic Walls on the Aeroacoustics in Transonic Cavity Flow
Artikel i vetenskaplig tidskrift, 2022

The effects of elastic cavity walls on noise generation at transonic speed are investigated for the generic M219 cavity. The flow is simulated with the Spalart–Allmaras (SA) improved delayed detached-eddy simulation (IDDES) turbulence model in combination with a wall function. The structural analysis software uses a modal formulation. The first 50 structural normal mode shapes are included in the simulation, spanning frequencies of 468–2280 Hz. Results are compared with those from a reference simulation with rigid cavity walls. A spectral analysis of pressure fluctuations from a microphone array above the cavity evinces a distinct tone at 816 Hz, which is absent in the reference simulation. Furthermore, the power of the 4th Rossiter mode at 852 Hz is depleted, implying a significant energy transfer from the fluid to the structure. Spectral proper orthogonal decomposition (SPOD) is employed for analyses of cavity wall pressure fluctuations and wall displacements. The SPOD mode energy spectra show results consistent with the spectra of the microphone array with respect to the tone at 816 Hz and the depletion of the energy at the 4th Rossiter mode. Furthermore, the SPOD mode energy spectra show energy spikes at additional frequencies, which coincide with structural eigenfrequencies.

FSI

aeroacoustics

aeroelasticity

cavity flow

hybrid RANS-LES

Författare

Stefan Nilsson

Chalmers, Mekanik och maritima vetenskaper, Strömningslära

Huadong Yao

Chalmers, Mekanik och maritima vetenskaper, Strömningslära

Anders Karlsson

Saab AB

Sebastian Arvidson

Chalmers, Mekanik och maritima vetenskaper, Strömningslära

Aerospace

22264310 (eISSN)

Vol. 9 11 716

Multidisciplinära avancerade beräkningar: Fluiddynamik,Aeroakustik, Strukturdynamik (MultFAS)

VINNOVA (PO1600297547), 2019-11-01 -- 2022-10-31.

Design av de aerodynamiska egenskaperna för ett elektriskt flygplan

Transport, 2021-01-01 -- 2022-12-31.

Energi, 2021-01-01 -- 2022-12-31.

Strategiskt forskningsprojekt på Chalmers inom hydro- och aerodynamik

Stiftelsen Chalmers tekniska högskola, 2019-01-01 -- 2023-12-31.

Styrkeområden

Transport

Energi

Ämneskategorier

Teknisk mekanik

Annan fysik

Strömningsmekanik och akustik

Infrastruktur

C3SE (Chalmers Centre for Computational Science and Engineering)

DOI

10.3390/aerospace9110716

Mer information

Senast uppdaterat

2023-03-16