Design and Testing of a Scaled Demonstrator Turbine at the National Wind Technology Center

[1]  Kathryn E. Johnson,et al.  Models used for the simulation and control of a segmented ultralight morphing rotor , 2017 .

[2]  Kathryn E. Johnson,et al.  Controls Advanced Research Turbine (CART) Commissioning and Baseline Data Collection , 2002 .

[3]  M. Drela XFOIL: An Analysis and Design System for Low Reynolds Number Airfoils , 1989 .

[4]  Alan Wright,et al.  Controller Field Tests on the NREL CART2 Turbine , 2010 .

[5]  Kathryn E. Johnson,et al.  LPV-based torque control for an extreme-scale morphing wind turbine rotor , 2017, 2017 American Control Conference (ACC).

[6]  Michael S. Selig,et al.  A morphing downwind‐aligned rotor concept based on a 13‐MW wind turbine , 2016 .

[7]  M. Giles,et al.  Viscous-inviscid analysis of transonic and low Reynolds number airfoils , 1986 .

[8]  Michael S. Selig,et al.  Development and Application of a Multipoint Inverse Design Method for Horizontal Axis Wind Turbines , 1995 .

[9]  M. Maughmer,et al.  Generalized multipoint inverse arifoil design , 1992 .

[10]  Chao Qin,et al.  Gravo-Aeroelastic Scaling a 13.2 MW Wind Turbine Blade to a 1-meter Model , 2018 .

[11]  E. Loth,et al.  Gravo-Aeroelastically Scaling for Extreme-Scale Wind Turbines , 2017 .

[12]  Kathryn E. Johnson,et al.  Development, implementation, and testing of fault detection strategies on the National Wind Technology Center’s controls advanced research turbines , 2011 .

[13]  Michael S. Selig Multi-point inverse design of an infinite cascade of airfoils , 1992 .

[14]  Adam Steele,et al.  Downwind pre‐aligned rotors for extreme‐scale wind turbines , 2017 .