Windturbine blade analysis with computational fluid dynamics using wings turbulators
2019
0 views
0 downloads
Advisor: Dr. Öğr. Üyesi Ünal Uysal
Abstract (EN)
Keywords: CFD, Wind, Wind Turbines Wing sections have been developed for working areas and wind turbines affected by aerodynamic forces and the need for new wing sections is increased according to the desired feature for various uses. The power obtained from the wind turbines according to the lifting force they have at certain wind speeds is certain. We have made certain changes in the structure of the wing profile is the same speeds even lower speeds, it is possible to get more power. Thus, in order to have more efficient wind turbines more than the existing transport force moving power from the drag force available and is less drag force must be obtained. In this study, 3-dimensional design of the wing model with a length of 1 meter and a length of 1 meter was made. The upper surface of the wings made the design of the cord along the length of the wing longitudinal 90 degrees, 30 degrees, 45 degrees and 60 degrees angles placed with swirl-effect analysis using computational fluid dynamics programs. Aerodynamic analysis is valid for only fully turbulent flows when k-epsilon model. ANSYS/Fluent program of 5 meters/second, 10 meters/second and 15 meters/second velocity distributions of the pressure and speed.
Author
Dr. Ufuk Ali Aygen
How to Cite
Ufuk Ali Aygen (Master Thesis). Windturbine blade analysis with computational fluid dynamics using wings turbulators, 2019, Sakarya University.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Sakarya University
- Computational investigation of battery materials using density functional theory(2023)
- Haci Ahmed b. Seyyid al-Bigavî and Tarjama al-Awārif al-maārif (sections of 22-43)(2024)
- Synthesis of carbazol substituted 3,4-dihydropyrimidine-2(1h)-thione deri̇vati̇ves(2024)
- Classification of recyclable wastes with deep learning models: A comparison on the effect of dataset size(2024)
- Hermeneutical analysis of sacrifice, sacred violence and scapegoat motifs in Turkish Mythology(2024)
- Novel thio-chalcone substituted metallophthalocyanines: synthesis, characterization and redox behaviour(2018)
