Airfoil audio review
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Bruun, Hot-Wire Anemometry: Principles and Signal Analysis, 1st ed. Iosilevskii, “ Flow over NACA-0009 and Eppler-61 airfoils at Reynolds numbers between 5 and 60 thousands,” AIAA J. Sandham, “ Stability and receptivity characteristics of a laminar separation bubble on an airfoil,” J. Sandham, “ Direct numerical simulations of forced and unforced separation bubbles on an airfoil at incidence,” J. Kähler, “ Scanning PIV investigation of the laminar separation bubble on a SD7003 airfoil,” Exp.
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Yaras, “ Passive manipulation of separation-bubble transition using surface modifications,” J. Wagner, “ A combined experimental/numerical study of unsteady phenomena in a laminar separation bubble,” Flow, Turbul. Maucher, “ Investigations of time-growing instabilities in laminar separation bubbles,” Eur. Henningson, “ A numerical and experimental study of a transitional separation bubble,” Aerosp. dissertation ( Technion - Israel Institute of Technology, Haifa, 2010). Elimelech, “ Flow fields over airfoils at Reynolds numbers between 500,” Ph.D. Giguere, “ Experiments on airfoils at low Reynolds numbers,” in Proceedings of the 34th Aerospace Sciences Meeting and Exhibit, Reno, NV, AIAA Paper No. Muller (Progress in Astronautics and Aeronautics, 2001), Vol. Lowson, “ Effects of acoustic disturbances on low Reynolds aerofoil flows,” in Fixed and Flapping Wing Aerodynamics for Micro Air Vehicle Application, edited by T. Gad-El-Hak, “ Control of low Reynolds number airfoil: A review,” in Low Reynolds Number Aerodynamics, edited by T.