The aim of the present study is to investigate the accuracy of two different dynamic stall approaches for wind-turbine airfoils. The first approach is the semi-empirical Leishman-Beddoes model (L-B), and the second is the computational fluid dynamic (CFD) results. National Renewable-Energy Laboratory (NREL) S series airfoils are used, and the simulations are performed in Re=106. 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 semi-empirical model has appr...
Airfoils are subjected to the ‘dynamic stall’ phenomenon in significant pitch oscillatio...
Floating offshore wind turbines in deep waters offer significant advantages to onshore and near-shor...
Computations for two-dimensional flow past a stationary and harmonically pitching wind turbine airfo...
Dynamic stall is phenomenon that plays a role in many applications such as helicopter or wind turbin...
This paper presents a dynamic stall model to predict the unsteady airloads on wind turbine airfoils....
Aeroelastic codes are fundamental for the design of wind turbines and the prediction of instabilitie...
The necessity in the analysis of dynamic stall becomes increasingly important due to its impact on m...
Wind turbines experience a variety of different operating conditions during their operation. As a re...
Modern wind turbines frequently operate at off-design conditions during their life cycle. They under...
National Renewable Energy Laboratory, USA (NREL) airfoils have been specially developed for wind tur...
In this article, the flow behavior around a NACA 0012 airfoil which is oscillating with different Re...
This study provides a novel contribution toward the establishment of a new high-fidelity simulation-...
Robust and accurate dynamic stall modeling remains one of the most difficult tasks in wind turbine l...
Stall-delay is a known phenomenon in wind turbines, and has been associated with the Coriolis effect...
This study aims to assess the dynamic stall of the wind turbine blade undergoing pitch oscillation (...
Airfoils are subjected to the ‘dynamic stall’ phenomenon in significant pitch oscillatio...
Floating offshore wind turbines in deep waters offer significant advantages to onshore and near-shor...
Computations for two-dimensional flow past a stationary and harmonically pitching wind turbine airfo...
Dynamic stall is phenomenon that plays a role in many applications such as helicopter or wind turbin...
This paper presents a dynamic stall model to predict the unsteady airloads on wind turbine airfoils....
Aeroelastic codes are fundamental for the design of wind turbines and the prediction of instabilitie...
The necessity in the analysis of dynamic stall becomes increasingly important due to its impact on m...
Wind turbines experience a variety of different operating conditions during their operation. As a re...
Modern wind turbines frequently operate at off-design conditions during their life cycle. They under...
National Renewable Energy Laboratory, USA (NREL) airfoils have been specially developed for wind tur...
In this article, the flow behavior around a NACA 0012 airfoil which is oscillating with different Re...
This study provides a novel contribution toward the establishment of a new high-fidelity simulation-...
Robust and accurate dynamic stall modeling remains one of the most difficult tasks in wind turbine l...
Stall-delay is a known phenomenon in wind turbines, and has been associated with the Coriolis effect...
This study aims to assess the dynamic stall of the wind turbine blade undergoing pitch oscillation (...
Airfoils are subjected to the ‘dynamic stall’ phenomenon in significant pitch oscillatio...
Floating offshore wind turbines in deep waters offer significant advantages to onshore and near-shor...
Computations for two-dimensional flow past a stationary and harmonically pitching wind turbine airfo...