Rigid Actuation Of The Wind Turbine

F-0072-2016-11584

5/17/2016

Authors
Abstract
Content

The possibility of a wind turbine entering vortex ring state during pitching oscillations is explored in this paper. The work first validated the employed CFD method, and continued with computations at fixed yaw of the NREL Phase VI wind turbine. The aerodynamic performance of the rotor was computed using the Helicopter Multi-Block flow solver. This code solves the Navier-Stokes equations in integral form using the arbitrary Lagrangian-Eulerian formulation for time-dependent domains with moving boundaries. With confidence on the established method, yawing and pitching oscillations were performed suggesting partial vortex ring state during pitching motion. The results also show the strong effect of the frequency and amplitude of oscillations on the wind turbine performance.

Meta TagsDetails
Pages
12
Citation
Leble, V. and Barakos, G., "Rigid Actuation Of The Wind Turbine," Vertical Flight Society 72nd Annual Forum and Technology Display, West Palm Beach, Florida, May 17, 2016, .
Additional Details
Publisher
Published
5/17/2016
Product Code
F-0072-2016-11584
Content Type
Technical Paper
Language
English