Numerical investigation on vortex-structure interaction generating aerodynamic noises for rod-airfoil models (Q1992657)

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scientific article; zbMATH DE number 6972020
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Numerical investigation on vortex-structure interaction generating aerodynamic noises for rod-airfoil models
scientific article; zbMATH DE number 6972020

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    Numerical investigation on vortex-structure interaction generating aerodynamic noises for rod-airfoil models (English)
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    5 November 2018
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    Summary: In past several decades, vortex-structure interaction generated aerodynamic noise became one of the main concerns in aircraft design. In order to understand the mechanism, the acoustic analogy method combined with the RANS-based nonlinear acoustics solver (NLAS) is investigated. The numerical method is firstly evaluated by the experiment data of the classic rod-airfoil model. Compared with the traditional analogy methods, the RANS/NLAS can capture the nonlinear aerodynamic noise more accurately with lower gird requirements. Then different rod-airfoil configurations were simulated to investigate the aeroacoustic interaction effects. The numerical results are in good agreement with those of the earlier experimental research. It is found that the vortex-shedding crash to the airfoil is the main reason for the noise generation which is dependent on the configurations, distance, and flow conditions.
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