Title :
Design and numerical study of the integration of omnidirectional shroud with vertical axis wind turbine
Author :
Chong, W.T. ; Fazlizan, A. ; Yip, S.Y. ; Wong, K.H. ; Sim, L.F. ; Poh, S.C. ; Hewb, W.P.
Author_Institution :
Dept. of Mech. Eng., Univ. of Malaya, Kuala Lumpur, Malaysia
Abstract :
The integration of a vertical axis wind turbine (VAWT) with the novel omni-directional shroud is proposed. It consists of the upper wall, lower wall and an array of 5 guide-vanes. Wind from all directions is collected radially from a larger area and the geometry of omni-directional shroud creates a venturi effect to increase the wind speed before entering the wind turbine. Guide-vanes aid to channel wind to better angles-of-attack of the turbine blades. Hence, self-starting behavior of the VAWT and the coefficient of power improve. The system was investigated numerically by simulating the wind flow over the omni-directional shroud with a single bladed NACA 0015 airfoil VAWT. In this 2D simulation, the shear stress transport (SST) k-Ȧ turbulence model with the sliding mesh method was used with the tip speed ratio of 5.1 for the wind turbine. The result was verified by re-simulating the experiment published by the Sandia National Laboratories. The result shows that the torque coefficient of the VAWT was increased up to 287% as compared to the bare VAWT. This system improves the performance of the VAWT and it has a great potential to be sited in urban areas for onsite and grid-connected power generation.
Keywords :
blades; power grids; power system interconnection; shear turbulence; wind turbines; 2D simulation; SST k-Ȧ turbulence model; angle of attack; channel wind; grid connected power generation; guide vanes; omnidirectional shroud; self-starting behavior; shear stress transport; single bladed NACA 0015 airfoil VAWT; sliding mesh method; turbine blade; venturi effect; vertical axis wind turbine; wind flow simulation; Omni-directional shroud; On-site energy generation; Renewable Energy; Urban wind energy; Vertical axis wind turbine;
Conference_Titel :
Clean Energy and Technology (CEAT) 2014, 3rd IET International Conference on
Print_ISBN :
978-1-78561-069-1
DOI :
10.1049/cp.2014.1465