An optimization method, featuring a loop algorithm which includes a genetic optimizer, a twodimensional URANS CFD model, a fitness calculator and an airfoil generator, is created and deployed to develop a new airfoil shape which can possibly increase the aerodynamic performance of a Darrieus wind turbine. The two-dimensional URANS CFD model is validated against a baseline Darrieus rotor, whose experimental data are available in literature. The optimization included as initial solutions the most common airfoils described in literature and is targeted to increase the aerodynamic performance of the two-dimensional model of the baseline rotor at fixed wind and rotational speeds. The optimization resulted in a new airfoil shape showing a particular configuration of mean line and thickness distribution. The airfoil aerodynamics is analyzed by estimating the aerodynamic coefficients and pressure distributions at different operative conditions.
Performance-optimized airfoil for Darrieus wind turbines
BEDON, GABRIELE;DE BETTA, STEFANO;BENINI, ERNESTO
2016
Abstract
An optimization method, featuring a loop algorithm which includes a genetic optimizer, a twodimensional URANS CFD model, a fitness calculator and an airfoil generator, is created and deployed to develop a new airfoil shape which can possibly increase the aerodynamic performance of a Darrieus wind turbine. The two-dimensional URANS CFD model is validated against a baseline Darrieus rotor, whose experimental data are available in literature. The optimization included as initial solutions the most common airfoils described in literature and is targeted to increase the aerodynamic performance of the two-dimensional model of the baseline rotor at fixed wind and rotational speeds. The optimization resulted in a new airfoil shape showing a particular configuration of mean line and thickness distribution. The airfoil aerodynamics is analyzed by estimating the aerodynamic coefficients and pressure distributions at different operative conditions.Pubblicazioni consigliate
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