Acoustic Mode Attenuation in Ducts (Using CFD) with Time-Domain Impedance Boundary Condition

Author:

Casadei Loris1,Deniau Hugues2,Nodé-Langlois Thomas1,Piot Estelle2,Polacsek Cyril3

Affiliation:

1. Airbus Operations S.A.S, 31060 Toulouse, France

2. Department of Multi-Physics for Energetics, ONERA, University of Toulouse, Toulouse, F-31055 France

3. Department of Aerodynamics, Aeroelasticity and Acoustics, ONERA, University of Paris Saclay, F-92322 Châtillon, France

Abstract

In the framework of improving aircraft nacelle design to comply international regulation on aircraft noise, a time-domain impedance boundary condition (TDIBC) based on the oscillo-diffusive representation is implemented in an industrial computational fluid dynamics (CFD) solver under a characteristic formalism, in order to take into account acoustic liner attenuation. A validation of such TDIBC is carried out, first on a two-dimensional benchmark case, then on a more realistic three-dimensional cylindrical configuration, with focus on the acoustic modal content and its attenuation with and without flow. Unsteady Reynolds-averaged Navier–Stokes computations are performed, with the grazing flow being considered laminar. Good agreement is found between the CFD results and the references (computational aeroacoustics results and experiments), with differences in the order of [Formula: see text] for most cases. The formulation chosen for the TDIBC proved to have no significant impact on numerical stability or computational time.

Funder

Airbus

Association Nationale de la Recherche et de la Technologie

Publisher

American Institute of Aeronautics and Astronautics (AIAA)

Subject

Aerospace Engineering

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