DocumentCode :
1783412
Title :
Vertical Axis Wind Turbine performance prediction for low wind speed environment
Author :
Kanyako, Franklyn ; Janajreh, Isam
Author_Institution :
iEnergy Center, Masdar Inst. of Sci. & Technol., Abu Dhabi, United Arab Emirates
fYear :
2014
fDate :
16-16 May 2014
Firstpage :
1
Lastpage :
10
Abstract :
Vertical Axis Wind Turbine is the most favorable for urban wind turbine integration in future smart grid as they do not suffer from frequent change in wind direction, can simply integrate with building architecture, and have better response in turbulence wind flow which is common in urban areas. This work contributes to the development of aerodynamic model for studying Vertical Axis Wind Turbine for low speed environment. Based on the available wind speed at Masdar City (24.4202° N, 54.6132° E) the Double Multiple Stream Tube model (DMST) was developed to predict the performance of small scale fixed pitch VAWT using NACA0015 and NACA0018 airfoils. Numerical simulation is conducted for three-dimensional unsteady flow around the same VAWT model. Comparison of the analytical results with computational fluid dynamics (CFD) simulation has been performed. Both the CFD and DMST results have shown minimum and/or negative torque and performance at lower tip speed ratios for the modeled turbine, which implies the inability of turbine to self start.
Keywords :
aerodynamics; computational fluid dynamics; flow instability; flow simulation; numerical analysis; pipe flow; turbulence; wind turbines; CFD simulation; DMST model; Masdar City; NACA0015 airfoil; NACA0018 airfoil; Numerical simulation; aerodynamic model; building architecture; computational fluid dynamics simulation; double multiple stream tube model; future smart grid; low wind speed environment; small scale fixed pitch VAWT; three-dimensional unsteady flow; turbulence wind flow; urban wind turbine integration; vertical axis wind turbine performance; wind direction; Aerodynamics; Atmospheric modeling; Blades; Computational modeling; Electron tubes; Wind speed; Wind turbines; Airfoil; CFD; Vertical Axis Wind Turbine;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Innovations in Technology Conference (InnoTek), 2014 IEEE
Conference_Location :
Warwick, RI
Type :
conf
DOI :
10.1109/InnoTek.2014.6877366
Filename :
6877366
Link To Document :
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