WOS:000393726200034International audienceIn this paper, Direct Numerical Simulations (DNS) are carried out in order to capture the flow instabilities and transition to turbulence occurring on a Savonius style wind turbine (SSWT) blade. Simulations are conducted with the open source code NEK5000, solving the incompressible Navier-Stokes equations with a high order, spectral element method. Because of the relatively high Reynolds number considered (Re xi = 9 x 10(4)), the computational domain of the Savonius blade is reduced to the pressure side, and the blade is studied in static condition, which avoids the large scale vortex shedding that occurs on its suction side, particularly allows to investigate the static performance of the wind turbi...
Understanding the flow around wind turbines is a highly relevant research question due to the increa...
Vertical axis wind turbine (VAWT) type Savonius rotor is self-starting, inexpensive, less technicali...
The optimization of new generation of the wind farms is dependent on our understanding of wind turbi...
WOS:000393726200034International audienceIn this paper, Direct Numerical Simulations (DNS) are carri...
WOS:000392354900049International audienceSavonius-style wind turbines are a class of vertical axis w...
© Copyright 2016 by ASME. Savonius-style wind turbines are a class of vertical axis wind turbine usu...
The present paper aims to numerically investigate the two-dimensional flow analysis of modified Savo...
Savonius type wind turbine is the subject of the present study. The Savonius wind turbine has a rela...
The main objective is intended to be the numerical investigation to determine the structure of the r...
This numerical research has investigated the influence of the turbulence model on a Savonius wind tu...
Previous attempts to describe the structure of wind turbine wakes and their mutual interaction were ...
The Savonius wind turbine is a type of vertical axis wind turbine (VAWTs) that is simply composed of...
This work presents a numerical study of the aerodynamic performance and the resulting flow field of ...
Vertical Axis Wind Turbine (VAWT) is the least efficient conventional wind energy generator. But the...
AbstractThis paper aims to present the study of flow through a vertical axis wind turbine of Savoniu...
Understanding the flow around wind turbines is a highly relevant research question due to the increa...
Vertical axis wind turbine (VAWT) type Savonius rotor is self-starting, inexpensive, less technicali...
The optimization of new generation of the wind farms is dependent on our understanding of wind turbi...
WOS:000393726200034International audienceIn this paper, Direct Numerical Simulations (DNS) are carri...
WOS:000392354900049International audienceSavonius-style wind turbines are a class of vertical axis w...
© Copyright 2016 by ASME. Savonius-style wind turbines are a class of vertical axis wind turbine usu...
The present paper aims to numerically investigate the two-dimensional flow analysis of modified Savo...
Savonius type wind turbine is the subject of the present study. The Savonius wind turbine has a rela...
The main objective is intended to be the numerical investigation to determine the structure of the r...
This numerical research has investigated the influence of the turbulence model on a Savonius wind tu...
Previous attempts to describe the structure of wind turbine wakes and their mutual interaction were ...
The Savonius wind turbine is a type of vertical axis wind turbine (VAWTs) that is simply composed of...
This work presents a numerical study of the aerodynamic performance and the resulting flow field of ...
Vertical Axis Wind Turbine (VAWT) is the least efficient conventional wind energy generator. But the...
AbstractThis paper aims to present the study of flow through a vertical axis wind turbine of Savoniu...
Understanding the flow around wind turbines is a highly relevant research question due to the increa...
Vertical axis wind turbine (VAWT) type Savonius rotor is self-starting, inexpensive, less technicali...
The optimization of new generation of the wind farms is dependent on our understanding of wind turbi...