The flow around a generic passenger car under the influence of crosswind was predicted using large eddy simulation (LES). The Reynolds number based on the incoming velocity the car’s length, L used was Re = 9 × 105. Yaw angles of crosswind of 10°, 20° and 30° were studied and the LES results were compared with the experimental observations and previous Reynolds averaged Naviers-Stokes (RANS) and detached eddy simulations (DES). The present LES were found to predict flows in better agreement with the experimental observations than previous RANS and DES. This shows that LES is better suited than RANS or DES for moderate Reynolds number flows around scale-model car in crosswinds which are inherently unsteady with regions of massive separations.
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ASME 2010 3rd Joint US-European Fluids Engineering Summer Meeting collocated with 8th International Conference on Nanochannels, Microchannels, and Minichannels
August 1–5, 2010
Montreal, Quebec, Canada
Conference Sponsors:
- Fluids Engineering Division
ISBN:
978-0-7918-4948-4
PROCEEDINGS PAPER
Numerical Investigation of the Influence of Side Winds on a Simplified Car at Various Yaw Angles
Sinisˇa Krajnovic´,
Sinisˇa Krajnovic´
Chalmers University of Technology, Go¨teborg, Sweden
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Sasan Sarmast
Sasan Sarmast
Chalmers University of Technology, Go¨teborg, Sweden
Search for other works by this author on:
Sinisˇa Krajnovic´
Chalmers University of Technology, Go¨teborg, Sweden
Sasan Sarmast
Chalmers University of Technology, Go¨teborg, Sweden
Paper No:
FEDSM-ICNMM2010-30766, pp. 2693-2704; 12 pages
Published Online:
March 1, 2011
Citation
Krajnovic´, S, & Sarmast, S. "Numerical Investigation of the Influence of Side Winds on a Simplified Car at Various Yaw Angles." Proceedings of the ASME 2010 3rd Joint US-European Fluids Engineering Summer Meeting collocated with 8th International Conference on Nanochannels, Microchannels, and Minichannels. ASME 2010 3rd Joint US-European Fluids Engineering Summer Meeting: Volume 1, Symposia – Parts A, B, and C. Montreal, Quebec, Canada. August 1–5, 2010. pp. 2693-2704. ASME. https://doi.org/10.1115/FEDSM-ICNMM2010-30766
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