This paper presents the experimental and numerical study on MEXICO wind turbine blades. Previous work by other researchers shows that large deviations exist in the loads comparison between numerical predictions and experimental data for the rotating MEXICO wind turbine. To reduce complexities and uncertainties, a non-rotating experimental campaign has been carried out on MEXICO blades Delft University of Technology. In this new measurement, quasi-2D aerodynamic characteristics of MEXICO blades on three spanwise sections are measured at different inflow velocities and angles of attack. Additionally, RANS simulations are performed with OpenFOAM-2.1.1 to compare numerical results against measured data. The comparison and analysis of aerodynami...
This paper presents an analysis of measurements which have been taken in the EU project Mex-ico (Mod...
A computational fluid dynamics (CFD) simulation has been evaluated for a setup of the Mexico-rotor e...
The design of wind turbines requires a deep insight into their complex aerodynamics, such as dynamic...
In this paper, three dimensional flow over non-rotating MEXICO blades is simulated by CFD methods. T...
This paper aims to provide an explanation for the overprediction of aerodynamic loads by CFD compare...
Wind turbines are operating under very complex and uncontrolled environmental conditions, including ...
Wind turbine structures and components suffer excessive loads and premature failures when key aerody...
Since the investigation of van Ingen et al., attempts were undertaken to search for laminar parts wi...
This paper presents an aerodynamic and aeroelastic analysis of the MEXICO wind turbine, using the co...
Rotational effects are known to influence severely the aerodynamic performance of the inboard region...
SUMMARY Radial flow develops in the bottom of separated boundary layer over rotating blades. Theref...
Rotational effects are known to influence severely the aerodynamic performance of the inboard region...
CFD (Computational Fluid Dynamics) simulations are a very promising method for predicting the aerody...
This paper presents a computational investigation of the wake of the MEXICO rotor. The compressible ...
Wind turbine structures and components suffer excessive loads and premature failures when key aerody...
This paper presents an analysis of measurements which have been taken in the EU project Mex-ico (Mod...
A computational fluid dynamics (CFD) simulation has been evaluated for a setup of the Mexico-rotor e...
The design of wind turbines requires a deep insight into their complex aerodynamics, such as dynamic...
In this paper, three dimensional flow over non-rotating MEXICO blades is simulated by CFD methods. T...
This paper aims to provide an explanation for the overprediction of aerodynamic loads by CFD compare...
Wind turbines are operating under very complex and uncontrolled environmental conditions, including ...
Wind turbine structures and components suffer excessive loads and premature failures when key aerody...
Since the investigation of van Ingen et al., attempts were undertaken to search for laminar parts wi...
This paper presents an aerodynamic and aeroelastic analysis of the MEXICO wind turbine, using the co...
Rotational effects are known to influence severely the aerodynamic performance of the inboard region...
SUMMARY Radial flow develops in the bottom of separated boundary layer over rotating blades. Theref...
Rotational effects are known to influence severely the aerodynamic performance of the inboard region...
CFD (Computational Fluid Dynamics) simulations are a very promising method for predicting the aerody...
This paper presents a computational investigation of the wake of the MEXICO rotor. The compressible ...
Wind turbine structures and components suffer excessive loads and premature failures when key aerody...
This paper presents an analysis of measurements which have been taken in the EU project Mex-ico (Mod...
A computational fluid dynamics (CFD) simulation has been evaluated for a setup of the Mexico-rotor e...
The design of wind turbines requires a deep insight into their complex aerodynamics, such as dynamic...