The flow around a wind turbine airfoil equipped with Vortex Generators (VGs) is examined. Predictions from three different Reynolds Averaged Navier Stokes (RANS) solvers with two different turbulence models and two different VG modelling approaches are compared between them and with experimental data. The best results are obtained with the more expensive fully resolved VG approach. The cost efficient BAY model can also provide acceptable results, if grid related numerical diffusion is minimized and only force coefficient polars are considered
Two computational methods, one based on the solution of the vorticity transport equation, and a seco...
Counter-rotating vortex generators (VGs) are typically employed to delay airflow separation on wind ...
The increased demand for wind power is related to changes in the sizes of wind turbines and the deve...
The flow around a wind turbine airfoil equipped with Vortex Generators (VGs) is examined. Prediction...
Today, Vortex Generators (VGs) are becoming an integral part of a Wind Turbine blade design. However...
Flow separation is the source of several problems in a wind turbine including load fluctuations, lif...
Experimental results and complimentary computations for airfoils with vortex generators are compared...
Additional thesis with a size of 10 European Credits. The increasing demand for wind energy has led ...
Vortex Generators (VGs) are a passive flow control device with multiple applications, including hori...
Vortex generators (VGs) are increasingly used in the wind turbine manufacture industry as flow contr...
The use of passive vortex generators (VGs) as a simple and effective way to delay or suppress separa...
Today, Vortex Generators (VGs) are becoming an integral part of a Wind Turbine blade design. However...
Passive flow control devices are included in the design of wind turbine blades in order to obtain be...
Passive vortex generators (VGs) are small plate-devices that are placed on the top of wings, in an a...
This article addresses two modelling aspects of wind turbine aerofoil aerodyna-mics based on the sol...
Two computational methods, one based on the solution of the vorticity transport equation, and a seco...
Counter-rotating vortex generators (VGs) are typically employed to delay airflow separation on wind ...
The increased demand for wind power is related to changes in the sizes of wind turbines and the deve...
The flow around a wind turbine airfoil equipped with Vortex Generators (VGs) is examined. Prediction...
Today, Vortex Generators (VGs) are becoming an integral part of a Wind Turbine blade design. However...
Flow separation is the source of several problems in a wind turbine including load fluctuations, lif...
Experimental results and complimentary computations for airfoils with vortex generators are compared...
Additional thesis with a size of 10 European Credits. The increasing demand for wind energy has led ...
Vortex Generators (VGs) are a passive flow control device with multiple applications, including hori...
Vortex generators (VGs) are increasingly used in the wind turbine manufacture industry as flow contr...
The use of passive vortex generators (VGs) as a simple and effective way to delay or suppress separa...
Today, Vortex Generators (VGs) are becoming an integral part of a Wind Turbine blade design. However...
Passive flow control devices are included in the design of wind turbine blades in order to obtain be...
Passive vortex generators (VGs) are small plate-devices that are placed on the top of wings, in an a...
This article addresses two modelling aspects of wind turbine aerofoil aerodyna-mics based on the sol...
Two computational methods, one based on the solution of the vorticity transport equation, and a seco...
Counter-rotating vortex generators (VGs) are typically employed to delay airflow separation on wind ...
The increased demand for wind power is related to changes in the sizes of wind turbines and the deve...