Publisher DOI: 10.2514/6.2016-3031
Title: Overset LES with an acoustic relaxation term for sound source simulations
Language: English
Authors: Bernicke, Paul 
Akkermans, Rinie 
Ewert, Roland 
Dierke, Jürgen 
Other : American Institute of Aeronautics and Astronautics 
Council of European Aerospace Societies 
Issue Date: 27-May-2016
Publisher: Curran Associates, Inc.
Part of Series: 22nd AIAA/CEAS Aeroacoustics Conference 2016 
Volume number: 7
Startpage: 5105
Endpage: 5118
Project: SFB 880: Fundamentals of High Lift for Future Civil Aircraft 
Conference: AIAA/CEAS Aeroacoustics Conference 2016 
Abstract: 
A novel Overset LES approach in perturbation form is presented to provide adequate turbulent information for the description of aerodynamically induced noise, but at the same time keep the computational effort within reasonable limits as compared to DNS. Solving the perturbation equations on top of a steady base flow leads to a hybrid approach, where scale-resolving simulation is only performed in necessary regions. The procedure is carried out in two steps. After capturing sound sources via the aforementioned methodology, the sound propagation is predicted by employing the Acoustic Perturbation equations. An Acoustic Relaxation Term is introduced to suppress pressure based grid-to-grid oscillations leaving other modes untouched. Its damping characteristics has been shown to be favourably frequency selective. The Acoustic Relaxation Term is able to damp or excite acoustic waves and in that way it potentially enables the excitement of prescribed acoustics in the Acoustic Perturbation equations for future applications. The governing equations are presented as well as the subgrid scale model. This subgrid scale model is calibrated with decaying isotropic turbulence.
URI: http://hdl.handle.net/20.500.12738/11784
ISBN: 9781624103865
1624103863
Review status: Unknown / not specified
Institute: Technische Universität Braunschweig 
Type: Chapter/Article (Proceedings)
Funded by: Deutsche Forschungsgemeinschaft 
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