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- W2736274362 abstract "Abstract The global warming threats, the presence of policies on support of renewable energies, and the desire for clean smart cities are the major drives for most recent researches on developing small wind turbines in urban environments. VAWTs (vertical axis wind turbines) are most appealing for energy harvesting in the urban environment. This is attributed due to structural simplicity, wind direction independency, no yaw mechanism required, withstand high turbulence winds, cost effectiveness, easier maintenance, and lower noise emission of VAWTs. This paper reviews recent published works on CFD (computational fluid dynamic) simulations of Darrieus VAWTs. Recommendations and guidelines are presented for turbulence modeling, spatial and temporal discretization, numerical schemes and algorithms, and computational domain size. The operating and geometrical parameters such as tip speed ratio, wind speed, solidity, blade number and blade shapes are fully investigated. The purpose is to address different progresses in simulations areas such as blade profile modification and optimization, wind turbine performance augmentation using guide vanes, wind turbine wake interaction in wind farms, wind turbine aerodynamic noise reduction, dynamic stall control, self-starting characteristics, and effects of unsteady and skewed wind conditions." @default.
- W2736274362 created "2017-07-21" @default.
- W2736274362 creator A5014773167 @default.
- W2736274362 creator A5056060243 @default.
- W2736274362 creator A5077777153 @default.
- W2736274362 date "2017-10-01" @default.
- W2736274362 modified "2023-10-16" @default.
- W2736274362 title "A review on computational fluid dynamic simulation techniques for Darrieus vertical axis wind turbines" @default.
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- W2736274362 doi "https://doi.org/10.1016/j.enconman.2017.07.016" @default.
- W2736274362 hasPublicationYear "2017" @default.
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