This work presents a computational study of a two-blade and a three-blade Savonius vertical axis wind turbines. The two-blade turbine was considered to be oriented at 0, 45, 90, and 135 degrees in reference to the direction of the prevailing wind. For the three-blade turbine, the orientations taken into account were 0, 30, 60, and 90 degrees in reference to the direction of the prevailing wind. The basic aim of this work was to study how the two designs are different from each other in terms of the forces acting on their blades. The computational simulations considered the turbines to be subjected to constant wind velocities of 5, 10, 20, and 30 m/s. Computational Fluid Dynamics (CFD) analyses were conducted for every case to find out the f...
There are two kinds of wind turbines according to the axis of rotation to the ground, horizontal axi...
This paper develops a new approximate model to predict the pressure and momentum forces on a Savoniu...
In this study, we present the results of a two-dimensional fluid-dynamic simulation of novel rotor g...
This work presents a computational study of a two-blade and a three-blade Savonius vertical axis win...
This project involves study of 2-Blade and 3-Blade Savonius vertical wind turbines positioned at dif...
Vertical Axis Wind Turbine (VAWT) is the least efficient conventional wind energy generator. But the...
As the idea of implementing alternative energy systems into urbanized areas continues to gain popula...
Considerable improvements in the aerodynamic performance of a vertical axis wind turbine (VAWT) can ...
Considerable improvements in the aerodynamic performance of a vertical axis wind turbine (VAWT) can ...
The main objective is intended to be the numerical investigation to determine the structure of the r...
The present paper aims to numerically investigate the two-dimensional flow analysis of modified Savo...
The aim of this study is to analyze and optimize a vertical axis Savonius-type wind turbine using Co...
A CFD study is conducted in order to characterize the dynamic behavior of a Savonius vertical axis w...
This work presents a numerical study of the aerodynamic performance and the resulting flow field of ...
The need to extract power from wind source has drastically increased over the years. Vertical Axis w...
There are two kinds of wind turbines according to the axis of rotation to the ground, horizontal axi...
This paper develops a new approximate model to predict the pressure and momentum forces on a Savoniu...
In this study, we present the results of a two-dimensional fluid-dynamic simulation of novel rotor g...
This work presents a computational study of a two-blade and a three-blade Savonius vertical axis win...
This project involves study of 2-Blade and 3-Blade Savonius vertical wind turbines positioned at dif...
Vertical Axis Wind Turbine (VAWT) is the least efficient conventional wind energy generator. But the...
As the idea of implementing alternative energy systems into urbanized areas continues to gain popula...
Considerable improvements in the aerodynamic performance of a vertical axis wind turbine (VAWT) can ...
Considerable improvements in the aerodynamic performance of a vertical axis wind turbine (VAWT) can ...
The main objective is intended to be the numerical investigation to determine the structure of the r...
The present paper aims to numerically investigate the two-dimensional flow analysis of modified Savo...
The aim of this study is to analyze and optimize a vertical axis Savonius-type wind turbine using Co...
A CFD study is conducted in order to characterize the dynamic behavior of a Savonius vertical axis w...
This work presents a numerical study of the aerodynamic performance and the resulting flow field of ...
The need to extract power from wind source has drastically increased over the years. Vertical Axis w...
There are two kinds of wind turbines according to the axis of rotation to the ground, horizontal axi...
This paper develops a new approximate model to predict the pressure and momentum forces on a Savoniu...
In this study, we present the results of a two-dimensional fluid-dynamic simulation of novel rotor g...