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  • Search: subject:"Tip-speed ratio"
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Tip speed ratio 6 Wind turbine 4 Power coefficient 3 Battery-charging windmill system 1 Blade element momentum theory 1 Blade pitch angle 1 Counter-rotating 1 Direct and indirect adaptive control 1 Hydrofoil-slat arrangement 1 Hydrokinetic turbine 1 Maximum power point tracking 1 Neural networks 1 Optimum torque 1 Power co-efficient 1 Power factor 1 Quantum neural network 1 Rotation number 1 Rotor 1 Rotor swept area 1 Savonius-style wind turbines 1 Static torque coefficient 1 Tip-speed ratio 1 Torque coefficient 1 Towing tank 1 Wind energy 1 Windmill 1 constant pitch 1 double fed induction generator 1 optimal tip speed ratio 1 wind turbine 1
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Article 8
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Ahmadi, Mohamad Mehdi 1 Alibas, Ilknur 1 Ata, R. 1 Aydemir, T. 1 Balas, C. 1 Djurovic, M. 1 Erol, Ö. 1 Ganjefar, Soheil 1 Ghassemi, Ali Akbar 1 Jebaselvi, G.D. Anbarasi 1 Joksimovic, G. 1 Kim, Hogeon 1 Koç, E. 1 Kılkış, B. 1 Lee, Seungmin 1 Lee, Soogab 1 Paramasivam, S. 1 Roy, Sukanta 1 Saha, Ujjwal K. 1 Son, Eunkuk 1 Vardar, Ali 1 Yavuz, T. 1 Yurdusev, M.A. 1 Çetin, N.S. 1
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Renewable Energy 4 Energy 2 Applied Energy 1 Renewable and Sustainable Energy Reviews 1
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RePEc 8
Showing 1 - 8 of 8
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Improving efficiency of two-type maximum power point tracking methods of tip-speed ratio and optimum torque in wind turbine system using a quantum neural network
Ganjefar, Soheil; Ghassemi, Ali Akbar; Ahmadi, Mohamad Mehdi - In: Energy 67 (2014) C, pp. 444-453
adaptive control structures equipped with QNN are used in tip-speed ratio (TSR) and optimum torque (OT) MPPT methods. The …
Persistent link: https://www.econbiz.de/10010809412
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Wind tunnel experiments of a newly developed two-bladed Savonius-style wind turbine
Roy, Sukanta; Saha, Ujjwal K. - In: Applied Energy 137 (2015) C, pp. 117-125
Wind tunnel experiments have been conducted with a newly developed two-bladed Savonius-style wind turbine specifically meant for a small-scale energy conversion. This novel shape of the turbine blade is evolved from a series of experiments with different types of blades in the recent past. The...
Persistent link: https://www.econbiz.de/10011116055
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Performance analysis of the airfoil-slat arrangements for hydro and wind turbine applications
Yavuz, T.; Koç, E.; Kılkış, B.; Erol, Ö.; Balas, C.; … - In: Renewable Energy 74 (2015) C, pp. 414-421
Standard airfoils historically used for wind and hydrokinetic turbines had maximum lift coefficients of around 1.3 at stall angles of attack, which is about 12°. At these conditions, the minimum flow velocities to generate electric power were about 7 m/s and 2 m/s for the wind turbine and the...
Persistent link: https://www.econbiz.de/10011076901
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Analysis on renewable energy systems
Jebaselvi, G.D. Anbarasi; Paramasivam, S. - In: Renewable and Sustainable Energy Reviews 28 (2013) C, pp. 625-634
The most alarming feature today is how to manage the energy demand and crucial climate change. To run life among these major threats, a good idea is to penetrate renewable energy sources gradually into the global energy market. These renewables are the best alternative to conventional fuels...
Persistent link: https://www.econbiz.de/10010709375
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Effects of design parameters on aerodynamic performance of a counter-rotating wind turbine
Lee, Seungmin; Kim, Hogeon; Son, Eunkuk; Lee, Soogab - In: Renewable Energy 42 (2012) C, pp. 140-144
This study investigates the effects of design parameters on the aerodynamic performance of a counter-rotating wind turbine. The counter-rotating wind turbine has two rotors rotating in opposite directions on the same axis. It has been proposed on the basis of the theory which states that a...
Persistent link: https://www.econbiz.de/10010803614
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Research on wind turbine rotor models using NACA profiles
Vardar, Ali; Alibas, Ilknur - In: Renewable Energy 33 (2008) 7, pp. 1721-1732
In this study, rotation rates and power coefficients of miniature wind turbine rotor models manufactured using NACA profiles were investigated. For this purpose, miniature rotor models with 310mm diameter were made from “Balsa” wood. When all properties of rotor models were taken into...
Persistent link: https://www.econbiz.de/10011045599
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Assessment of optimum tip speed ratio in wind turbines using artificial neural networks
Yurdusev, M.A.; Ata, R.; Çetin, N.S. - In: Energy 31 (2006) 12, pp. 2153-2161
speed ratio. The key to designing a wind turbine is to assess the optimal tip speed ratio (TSR). This will directly affect …Wind turbine blade design depends on several factors, such as turbine profile used, blade number, power factor, and tip …
Persistent link: https://www.econbiz.de/10011053158
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Optimal performance of double fed induction generator in windmills
Djurovic, M.; Joksimovic, G. - In: Renewable Energy 9 (1996) 1, pp. 862-865
only at one power characteristic with the optimum value of tip speed ratio (TSR). With such construction one does not have …
Persistent link: https://www.econbiz.de/10010804096
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