Comparative Analysis of Flow Fields Around NACA 23012 Airfoil at Three Characteristic Angles-of-Attack

Author:

Svorcan Jelena,Bornhoft Brett,Goc Konrad

Publisher

Springer Nature Switzerland

Reference7 articles.

1. Broeren, A., Addy, H., Jr., Lee, S., Monastero, M., & McClain, S. (2018). Three-dimensional ice-accretion measurement methodology for experimental aerodynamic simulation. Journal of Aircraft, 55(2), 817–828.

2. Hu, J., Xiong, X., Ren, K., Zhang, L., & Wei, J. (2009). Validation of turbulence models in STAR-CCM+ by N.A.C.A. 23012 airfoil characteristics. In ASEE northeast section conference.

3. Jacobs, E., & Clay, W. (1936). Characteristics of the N. A. C. A. 23012 airfoil from tests in the full-scale and variable-density tunnels, NACA-TR-530.

4. König, B., Fares, E., & Broeren, A. (2015). Lattice-Boltzmann analysis of three-dimensional ice shapes on a NACA 23012 airfoil. SAE technical paper, 2015-01-2084.

5. Monastero, M. (2013). Validation of 3-D ice accretion documentation and replication method including pressure-sensitive paint, MSc thesis, University of Illinois at Urbana-Champaign.

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