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Horizontal axis wind turbine 11 Blade element momentum theory 2 Horizontal-axis wind turbine 2 Wind turbine design 2 finite element method (FEM) 2 horizontal-axis wind turbine (HAWT) blades 2 structural optimization design 2 wind tunnel experiment 2 Adverse pressure gradient 1 Aeroacoustics 1 Aerodynamic performance 1 Aerodynamics 1 Aeroelastic deformation 1 Airfoil 1 Annual Energy production 1 Bernoulli beam 1 Blade Element Momentum Theory 1 Blade element momentum (BEM) theory 1 Coupled CFD–CSD method 1 Dielectric barrier discharge 1 Energy harvesting 1 Equivalent electromechanical circuit model 1 Flow characteristics 1 Flow control 1 Flow field measurement 1 Gear transmission 1 Interface circuit 1 Large-eddy simulation 1 Magnus effect 1 Mathematical modeling 1 Maximum power coefficient 1 Miniature horizontal axis wind turbine 1 Multi-objective optimisation 1 Numerical simulation 1 Optimization 1 Parallel coordinates 1 Particle image velocimetry 1 Plasma actuator 1 Potential flow 1 Power curve control 1
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Undetermined 14 Free 4
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Article 18
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Undetermined 18
Author
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Lanzafame, R. 3 Messina, M. 3 Bai, Chi-Jeng 2 Cai, Xin 2 Chong, Wen-Tong 2 Gu, Rongrong 2 Pan, Pan 2 Zhu, Jie 2 Ahmed, M. Rafiuddin 1 Ahmed, Noor A. 1 Bavanish, B. 1 Cameron, Michael 1 Cen, Kefa 1 Chejne, Farid 1 Chen, Po-Wei 1 Du, Zhaohui 1 Dyner, Isaac 1 Fan, Jianren 1 Fernández, Oscar 1 Fischer, Gunter Reinald 1 Gao, Zhiying 1 Hsiao, Fei-Bin 1 Hu, Danmei 1 Hu, J.Z. 1 Hua, Ouyang 1 Jukes, Timothy N. 1 Kipouros, Timoleon 1 Kwon, Oh Joon 1 Lee, Young-Ho 1 Luo, Kun 1 Mejía, Juan M. 1 Qiu, Y.P. 1 Rodríguez, Luis F. 1 Savill, Anthony Mark 1 Sedaghat, Ahmad 1 Singh, Ronit K. 1 Smith, Ricardo 1 Thyagarajan, K. 1 Wang, Jianwen 1 Wang, Wei-Cheng 1
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Renewable Energy 10 Energies 4 Energy 2 Renewable and Sustainable Energy Reviews 2
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RePEc 18
Showing 1 - 10 of 18
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System Integration of the Horizontal-Axis Wind Turbine: The Design of Turbine Blades with an Axial-Flux Permanent Magnet Generator
Bai, Chi-Jeng; Wang, Wei-Cheng; Chen, Po-Wei; Chong, … - In: Energies 7 (2014) 11, pp. 7773-7793
In designing a horizontal-axis wind turbine (HAWT) blade, system integration between the blade design and the …
Persistent link: https://www.econbiz.de/10011078509
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Multi-Objective Structural Optimization Design of Horizontal-Axis Wind Turbine Blades Using the Non-Dominated Sorting Genetic Algorithm II and Finite Element Method
Zhu, Jie; Cai, Xin; Pan, Pan; Gu, Rongrong - In: Energies 7 (2014) 2, pp. 988-1002
A multi-objective optimization method for the structural design of horizontal-axis wind turbine (HAWT) blades is …
Persistent link: https://www.econbiz.de/10010744580
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The Performance Test of Three Different Horizontal Axis Wind Turbine (HAWT) Blade Shapes Using Experimental and Numerical Methods
Hsiao, Fei-Bin; Bai, Chi-Jeng; Chong, Wen-Tong - In: Energies 6 (2013) 6, pp. 2784-2803
Three different horizontal axis wind turbine (HAWT) blade geometries with the same diameter of 0.72 m using the same …
Persistent link: https://www.econbiz.de/10011030702
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Structural Optimization Design of Horizontal-Axis Wind Turbine Blades Using a Particle Swarm Optimization Algorithm and Finite Element Method
Cai, Xin; Zhu, Jie; Pan, Pan; Gu, Rongrong - In: Energies 5 (2012) 11, pp. 4683-4696
This paper presents an optimization method for the structural design of horizontal-axis wind turbine (HAWT) blades …
Persistent link: https://www.econbiz.de/10010676057
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Smart control of a horizontal axis wind turbine using dielectric barrier discharge plasma actuators
Jukes, Timothy N. - In: Renewable Energy 80 (2015) C, pp. 644-654
Rotating stall around a small-scale horizontal axis wind turbine was experimentally studied to characterize and assess …
Persistent link: https://www.econbiz.de/10011263800
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Large-eddy simulation and wind-tunnel measurement of aerodynamics and aeroacoustics of a horizontal-axis wind turbine
Luo, Kun; Zhang, Sanxia; Gao, Zhiying; Wang, Jianwen; … - In: Renewable Energy 77 (2015) C, pp. 351-362
Large-eddy simulation of the whole three-dimensional vortex dynamics and noise radiation around a horizontal-axis wind … turbine has been studied and analyzed together with wind-tunnel experimental measurement. A computational framework that takes …
Persistent link: https://www.econbiz.de/10011189974
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Multi-objective optimisation of horizontal axis wind turbine structure and energy production using aerofoil and blade properties as design variables
Fischer, Gunter Reinald; Kipouros, Timoleon; Savill, … - In: Renewable Energy 62 (2014) C, pp. 506-515
-objective optimisation of turbine thrust, annual energy production as well as mass for a horizontal axis wind turbine blade. The optimisation …
Persistent link: https://www.econbiz.de/10010803867
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Predicting wind turbine blade loads and aeroelastic response using a coupled CFD–CSD method
Yu, Dong Ok; Kwon, Oh Joon - In: Renewable Energy 70 (2014) C, pp. 184-196
The aeroelastic response and the airloads of horizontal-axis wind turbine rotor blades were numerically investigated …
Persistent link: https://www.econbiz.de/10010804034
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The challenges and possible solutions of horizontal axis wind turbines as a clean energy solution for the future
Ahmed, Noor A.; Cameron, Michael - In: Renewable and Sustainable Energy Reviews 38 (2014) C, pp. 439-460
This paper presents a review of existing and emerging wind power technologies in light of the evident trends of the industry, and describes the challenges these technologies will face if wind turbines were to become a significant and reliable source of clean energy of the future. Apart from...
Persistent link: https://www.econbiz.de/10010906647
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Miniature horizontal axis wind turbine system for multipurpose application
Xu, F.J.; Yuan, F.G.; Hu, J.Z.; Qiu, Y.P. - In: Energy 75 (2014) C, pp. 216-224
A MWT (miniature wind turbine) has received great attention recently for powering WISP (Wireless Intelligent Sensor Platform). In this study, two MHAWTs (miniature horizontal axis wind turbines) with and without gear transmission were designed and fabricated. A physics-based model was proposed...
Persistent link: https://www.econbiz.de/10011053413
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