Title :
A numerical simulation of flow around a wind turbine airfoil based on transition model
Author :
Yuhong, Li ; Congming, Lu
Author_Institution :
Dept. of Thermal Eng., Tsinghua Univ., Beijing, China
Abstract :
The laminar-to-turbulent transition is one of the most complex but important flows. In order to deeply apprehend the wind turbine airfoil flow characteristics and the transition phenomenon, a two-equation transition model is applied in this article to simulate the flow over a wind turbine S814 airfoil. Typical angle of attack and both steady and unsteady transition models are tried. The predictions are compared with the experimental data of the National Renewable Energy Laboratory (NREL) and the simulation results of fully turbulent SST model. The analysis has been shown that, transition model can capture the phenomena of transition and flow separation more effectively. Under certain working conditions, the transition model predicts the lift coefficient and drag coefficient more accurately than a full turbulence model. The weak point is that the transition model requires a much longer computing time.
Keywords :
aerodynamics; drag; external flows; flow simulation; laminar to turbulent transitions; numerical analysis; wind turbines; NREL; National Renewable Energy Laboratory; S814 airfoil; aerodynamic performance; drag coefficient; flow separation; laminar-to-turbulent transition; lift coefficient; turbulent SST model; two-equation transition model; wind turbine airfoil; Aerodynamics; Automotive components; Computational fluid dynamics; Numerical simulation; Predictive models; Radio access networks; Renewable energy resources; Thermal engineering; Wind energy; Wind turbines; Transition model; aerodynamic performance; non-grid-connected wind power; numerical simulation; wind turbine airfoil;
Conference_Titel :
World Non-Grid-Connected Wind Power and Energy Conference, 2009. WNWEC 2009
Conference_Location :
Nanjing
Print_ISBN :
978-1-4244-4702-2
DOI :
10.1109/WNWEC.2009.5335793