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- W2015961145 abstract "This paper presents a theoretical aerodynamic performance optimization for two dimensional vertical axis wind turbines. A momentum type wake model is introduced with separate cosine type interference coefficients for the up and downwind half of the rotor. The cosine type loading permits the rotor blades to become unloaded near the junction of the upwind and downwind rotor halves. Both the optimum and the off design magnitude of the interference coefficients are obtained by equating the drag on each of the rotor halves to that on each of two cosine loaded actuator discs in series. The values for the optimum rotor efficiency, solidity and corresponding interference coefficients have been obtained in a closed form analytic solution by maximizing the power extracted from the downwind rotor half as well as from the entire rotor. A numerical solution was required when viscous effects were incorporated in the rotor optimization." @default.
- W2015961145 created "2016-06-24" @default.
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- W2015961145 date "1981-08-17" @default.
- W2015961145 modified "2023-09-25" @default.
- W2015961145 title "Up- and down-wind rotor half interference model for VAWT" @default.
- W2015961145 cites W1997778073 @default.
- W2015961145 doi "https://doi.org/10.2514/6.1981-2579" @default.
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