会议论文详细信息
The Science of Making Torque from Wind 2012
Wind turbine wake stability investigations using a vortex ring modelling approach
Baldacchino, Daniel^1 ; Van Bussel, Gerard J.W.^1
Delft University Wind Energy Research Institute, Faculty of Aerospace Engineering, Kluyverweg 1, Delft
2629 HS, Netherlands^1
关键词: Dynamic behaviours;    External perturbations;    Horizontal axis wind turbines;    Unsteady phenomena;    Vortex filament;    Wake instabilities;    Wake meandering;    Wind turbine wakes;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/555/1/012111/pdf
DOI  :  10.1088/1742-6596/555/1/012111
来源: IOP
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【 摘 要 】
In the present study, a simple inviscid vortex ring (VR) modelling approach is used to represent the developing rotor wake. This allows a straightforward investigation and comparison of the impact of uniform, yawed and sheared flow conditions on the development of the rotor wake, with the additional possibility of including ground effect. The effect of instabilities on the development of the wake is manually introduced in the form of perturbations of strength, ring position and size. The phenomenon of vortex filament interaction or leapfrogging, could play a role in the observation of unsteady phenomena and is therefore also addressed. Such a study is hence performed in light of recent conflicting views on the causes of wake meandering: is the observed dynamic wake behaviour a result of large scale turbulent forcing or do more subtle and intrinsic wake instabilities play a role? This study concludes that the presence of the ground and external perturbations, most notably changes in the wake pitch and the rotor thrust coefficient, can significantly affect the steady development of the wake. The mutual vortex pairing instability, whilst displaying interesting periodic behaviour, does not correlate with periodic wake behaviour reported by Medici et al. [1]. However, in the absence of unsteady inflow, it is shown that the wake of a Horizontal Axis Wind Turbine (HAWT) is certainly prone to displaying unstable, dynamic behaviour caused by these additional factors.
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