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◆ The Journal of the Acoustical Society of America2026-02-01· Computational aeroacoustics

Injection of acoustic waves via volumetric sources on a control surface for computational aeroacoustics

Giovanni Coco, Didier Dragna, Christophe Bailly, Hélène Posson

原始摘要(英文原文)· Original abstract
A formulation to introduce acoustic waves from a control surface using volumetric source terms is proposed for numerical simulations. A general expression of the source terms is derived from the non-linear Euler equations. The method is validated through three academic configurations: the injection of oblique plane waves and the radiation of a monopole source in two and three dimensions, in uniform flow. The governing equations are solved in a Cartesian grid using a low-dispersion and low-dissipation high order finite-difference numerical scheme. However, the control surface has an arbitrary shape, as demonstrated here with the use of a cylindrical surface. Numerical results show good agreement with analytical solutions in both phase and amplitude. The method is then applied to an open-fan aircraft engine configuration. The source terms are computed from a cylindrical control surface enclosing the rotor, based on data extracted from a previous fluid mechanics simulation. The radiated acoustic field is compared with the one obtained using the Ffowcs Williams-Hawkings integral formulation. The two solutions are again found in good agreement for this more realistic configuration.
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Injection of acoustic waves via volumetric sources on a control surface for computational aeroacoustics — 科研速览 Science Skim