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Study of active flow control for a simplified vehicle model using the PANS method
Institution:1. INRIA Bordeaux Sud-Ouest (team CARDAMOM), 200 Avenue de la Vieille Tour, Talence 33405, France;2. University of Bergamo, Department of Engineering and Applied Sciences, Viale Marconi 5, Dalmine 24044 BG, Italy;3. University of Brescia, Department of Mechanical and Industrial Engineering, via Branze 38, Brescia 25123 BS, Italy
Abstract:Flow control has shown a potential in reducing the drag in vehicle aerodynamics. The present numerical study deals with active flow control for a quasi-2D simplified vehicle model using a synthetic jet (zero net mass flux jet). Recently developed near-wall Partially-Averaged Navier–Stokes (PANS) method, based on the ζf RANS turbulence model, is used. The aim is to validate the performance of this new method for the complex flow control problem. Results are compared with previous studies using LES and experiments, including global flow parameters of Strouhal number, drag coefficients and velocity profiles. The PANS method predicts a drag reduction of approximately 15%, which is closer to the experimental data than the previous LES results. The velocity profiles predicted by the PANS method agree well with LES results and experimental data for both natural and controlled cases. The PANS prediction showed that the near-wake region is locked-on due to the synthetic jet, and the shear layer instabilities are thus depressed which resulted in an elongated wake region and reduced drag. It demonstrates that the PANS method is able to predict the flow control problem well and is thus appropriate for flow control studies.
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