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A vertical-axis rotor as the adjusting system of a horizontal axis wind turbine

Open Access
|Apr 2020

References

  1. Hau, E. (2013). Wind turbines: Fundamentals, Technologies, Application, Economics. Berlin: Springer Verlag.
  2. Müller, G. F., Jentsch, M., Stoddart, E. (2009). Vertical axis resistance type wind turbines for use in buildings. Renewable Energy, 34, 1407–1412.10.1016/j.renene.2008.10.008
  3. Bausas, M. D., Danao, L. A. M. (2015). The aerodynamics of a camber-bladed vertical axis wind turbine in unsteady wind. Energy, 93, 1155–1164.10.1016/j.energy.2015.09.120
  4. Ferreira, C. J. S., Van Bussel, G. J. W., Van Kuik, G. A. M., Scarano, F. (2011). On the Use of Velocity Data for Load Estimation of a VAWT in Dynamic Stall. J. Sol. Energy Eng, 133(1), 011006 1–8.10.1115/1.4003182
  5. Howell, R., Qin, N., Edwards, J., Durrani, N. (2010). Wind tunnel and numerical study of a small vertical axis wind turbine. Renewable Energy, 35, 412–422.10.1016/j.renene.2009.07.025
  6. Ismail, M. F., Vijayaraghavan, K. (2015). The effects of aerofoil profile modification on a vertical axis wind turbine performance. Energy, 80, 20–31.10.1016/j.energy.2014.11.034
  7. Li, Q. et al. (2015). Effect of number of blades on aerodynamic forces on a straight-bladed Vertical Axis Wind Turbine. Energy, 90, 784–795.10.1016/j.energy.2015.07.115
  8. Edwards, J. M., Danao, L. A. M., Howell, R. J. (2012). Novel Experimental Power Curve Determination and Computational Methods for the Performance Analysis of Vertical Axis Wind Turbines. J. Sol. Energy Eng, 134(3), 031008 63–78.10.1115/1.4006196
  9. Hure, N. et al. (2015). Optimal wind turbine yaw control supported with very short-term wind predictions. In IEEE International Conference on Industrial Technology (pp. 385–391), Seville.10.1109/ICIT.2015.7125129
  10. Xisto, C. M., Pascoa, J. C., Trancossi, M. (2015). Geometrical Parameters Influencing the Aerodynamic Efficiency of a Small-Scale Self-Pitch High Solidity VAWT. Journal of Solar Energy Engineering, 138(3), 10.
  11. Ahmed, S. (2011). Wind energy: theory and practice. New Delhi: PHI LearningPvt.
  12. Burton, T., Jenkins, N., Sharpe, D., Bossanyi, E. (2001). Wind Energy Handbook. New York: John Wiley & Sons.10.1002/0470846062
  13. Dakin, E., Priyavadan, M., Hopkins, A. (2011). Catching the Wind – An Update on Improved Yaw Alignment. In Proceedings of EWEA. Brussels.
  14. Islam, M., Ting, D. S. K., Fartaj, A. (2008). Aerodynamic models for Darrieus-type straight-bladed vertical axis wind turbines. Renewable and Sustainable Energy Reviews, 12, 1087–1109.10.1016/j.rser.2006.10.023
  15. Dongran Song, et al. (2017). A novel wind speed estimator-integrated pitch control method for wind turbines with global-power regulation, Energy, 138, 816–830.10.1016/j.energy.2017.07.033
  16. Kjellin, J., Eriksson, S., Bernhoff, H. (2013). Electric Control Substituting Pitch Control for Large Wind Turbines. J. Wind Energy, 1–4.10.1155/2013/342061
  17. Rossander, M., Goude, A., Eriksson, S. (2017). Critical speed control for a fixed blade variable speed wind turbine. MDPI Energies, 10(11), 1–21.10.3390/en10111699
  18. Yang, J. et al. (2016). Comparative studies on control systems for a two-blade variable-speed wind turbine with a speed exclusion zone. Energy, 109, 294–309.10.1016/j.energy.2016.04.106
  19. Wei, X., Pan, Z., Liping L. (2015). Wind tunnel experiments for innovative pitch regulated blade of horizontal axis wind turbine. Energy, 91, 1070–1080.10.1016/j.energy.2015.08.111
  20. Eriksson, S., Bernhoff, H., Leijon, M. (2008). Evaluation of different turbine concepts for wind power. Renewable and Sustainable Energy Review, 12, 1419–1434.10.1016/j.rser.2006.05.017
  21. Pope, K., Dincer, I., Naterer, G. F. (2010). Energy and exergy efficiency comparison of horizontal and vertical axis wind turbines. Renewable Energy, 35, 2102–2113.10.1016/j.renene.2010.02.013
  22. Ryś, J., Augustyn, M. (2015). Patent. Zespół samonaprowadzania turbiny wiatrowej o poziomej osi obrotu na kierunek wiatru. P.219834.
  23. Flaga, A., Kłaput, R., Augustyn, M. (2016). Wind tunnel tests of two free-standing lighting protection masts in different arrangements with surroundings roof objects and roof conditions. Engineering Structures, 124, 539–548.10.1016/j.engstruct.2016.06.040
  24. Ryś, J., Augustyn, M. (2013). Innovative construction of 3-component aerodynamic balance. In A. Muc, M. Barski, P. Kedzioria (Eds.), Advanced Materials in Machine Design – Key Engineering Materials (pp. 171–177), Trans Tech Pubn 542.10.4028/www.scientific.net/KEM.542.171
DOI: https://doi.org/10.37705/TechTrans/e2020009 | Journal eISSN: 2353-737X | Journal ISSN: 0011-4561
Language: English
Submitted on: Oct 25, 2019
Accepted on: Apr 9, 2020
Published on: Apr 27, 2020
Published by: Cracow University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2020 Marcin Augustyn, published by Cracow University of Technology
This work is licensed under the Creative Commons Attribution-ShareAlike 4.0 License.