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   accuracy of dynamic stall response for wind turbine airfoils based on semi-empirical and numerical methods  
   
نویسنده rasekh s. ,hosseini doust m. ,karimian s.
منبع journal of applied fluid mechanics - 2018 - دوره : 11 - شماره : 5 - صفحه:1287 -1296
چکیده    The aim of the present study is to investigate the accuracy of two different dynamic stall approaches for windturbine airfoils. the first approach is the semiempirical leishman-beddoes model (l-b), and the second is the computational fluid dynamic (cfd) results. national renewableenergy laboratory (nrel) s series airfoils are used, and the simulations are performed in re=10^6. for both approaches, aerodynamic coefficients are represented and compared to experimental data. validation data refer to ohio state university (osu) experiments, which are for pitch oscillation. results show that the accuracy of the l-b and cfd methods is dependent on mean angle of attack, reduced frequency and the phase of motion. the semiempirical model has appropriate accuracy as well as low computational cost while the cfd unsteady simulation could be properly used to predict the drag coefficient.
کلیدواژه dynamic stall ,wind turbine airfoils ,semi-empirical model ,numerical method
آدرس tarbiat modares university, department of aerospace engineering, iran, tarbiat modares university, department of aerospace engineering, iran, tarbiat modares university, department of aerospace engineering, iran
پست الکترونیکی karimian@modares.ac.ir
 
     
   
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