Seagull in Wind Turbine Airfoil Blade Design Application Bionic

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Wind energy is an inexhaustible, an inexhaustible source of renewable and clean energy. Present due to the energy crisis and environmental protection and other issues, the use of wind more and more world attention. The wind turbine is the best form of wind energy conversion. Wind turbine wind turbine blades to capture wind energy is the core component of the blade in a natural environment to run directly in contact with air, with seagulls wings generate lift conditions are similar, so the gull wings airfoil and excellent conformation, with wind turbine blade design designed by combining the bionic blades. Through numerical simulation analysis found bionic blade aerodynamic performance than the standard blade aerodynamic performance has improved.

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4336-4339

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August 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] MUELLER T.J. The Influence of Laminar Separation and Transition on Low Reynold Number Airfoil Hysteresis(Translation Journals style), Journal of Aircraft, vol22, 1985, 764-770.

DOI: 10.2514/3.45199

Google Scholar

[2] Michael S. Selig, James J. Guglielmo, Andy P. Broeren, Experiments on Airfoils at Low Reynolds Number (Translation Journals style), AIAA-1996-62, 34th Aerospace Science Meeting and Exhibit, NV, Jan1996, 15-18.

DOI: 10.2514/6.1996-62

Google Scholar

[3] TianshuLiu, K. uykendoll, R. Rhew, S. Jones, Avian Wings. AIAA 2004-2186.

Google Scholar

[4] HUA Xin, GU Rui, JIN Jing-fu, etal. Numerical Simulation And Aerodynamic Performance Comparison Between Seagull Aerofoil and NACA 4412 Aerofoil under Low-Reynolds. Advances in Natural Science, 2010, 3(2): 244-250.

Google Scholar

[5] MA Yi, LIU Yu-rong, JIN Jing-fu, CONG Qian. Analysis of the Aerodynamic Character of Bionic Wingspan on the Basis of Frigate Wing Structure. Advances in Natural Science, 2010, 3(2): 330-337.

Google Scholar