会议论文详细信息
The Science of Making Torque from Wind 2014
The Effect of Mounting Vortex Generators on the DTU 10MW Reference Wind Turbine Blade
Skrzypin´ski, Witold^1 ; Gaunaa, Mac^1 ; Bak, Christian^1
Technical University of Denmark, Department of Wind Energy, Frederiksborgvej 399, 4000 Roskilde, Denmark^1
关键词: Annual energy productions;    Leading edge roughness;    Realistic conditions;    Rotor performance;    Three dimensional effect;    Two-dimensional airfoils;    Vortex generators;    Wind turbine blades;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/524/1/012034/pdf
DOI  :  10.1088/1742-6596/524/1/012034
来源: IOP
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【 摘 要 】

The aim of the current work is to analyze possible advantages of mounting Vortex Generators (VG's) on a wind turbine blade. Specifically, the project aims at investigating at which radial sections of the DTU 10 MW Reference Wind Turbine blade it is most beneficial to mount the VG's in order to increase the Annual Energy Production (AEP) under realistic conditions. The present analysis was carried out in several steps: (1) The clean two dimensional airfoil characteristics were first modified to emulate the effect of all possible combinations of VG's (1% high at suction side x/c=0.2-0.25) and two Leading Edge Roughness (LER) values along the whole blade span. (2) The combinations from Step 1, including the clean case were subsequently modified to take into account three dimensional effects. (3) BEM computations were carried out to determine the aerodynamic rotor performance using each of the datasets from Step 2 along the whole blade span for all wind speeds in the turbine control scheme. (4) Employing the assumption of radial independence between sections of the blades, and using the results of the BEM computations described in Step 3, it is possible to determine for each radial position independently whether it is beneficial to install VG's in the smooth and LER cases, respectively. The results indicated that surface roughness that corresponds to degradation of the power curve may to some extent be mitigated by installation of VG's. The present results also indicated that the optimal VG configuration in terms of maximizing AEP depends on the degree of severity of the LER. This is because, depending on the condition of blade surface, installation of VG's on an incorrect blade span or installation of VG's too far out on the blade may cause loss in AEP. The results also indicated that the worse condition of the blade surface, the more gain may be obtained from the installation of VG's.

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