TR
EN
Computational Studies of Horizontal Axis Wind Turbines Using Advanced Turbulence Models
Abstract
The work presented in this paper aims to study the aerodynamic characteristics and performance of the NREL phase II rotor that is a horizontal axis upwind wind turbine rotor using a commercial 3-D Navier-Stokes solver FLUENT®. This solver is third order accurate in space and second order accurate in time, and uses an implicit time marching scheme. In this study, four turbulence models including Spalart-Allmaras (S-A), Standard k- , RNG- k- and SST k- models were used and evaluated. These models are considered to be the work horses of the turbulence modeling literature. The numerical results for considered wind turbine rotor were compared to the available experimental data. An unstructured grid of approximately 2 million cells is generated using the GAMBIT software, was used in computations. The comparisons show that CFD results along with the turbulence models used can predict the span-wise loading of the wind turbine rotor with reasonable agreement.
Keywords
References
- Robinson, M.C., Simms, D.A., Hand, M.M., Schreck, S.J., Horizontal Axis Wind Turbine Aerodynamics: Three-Dimensional Unsteady and Separated Flow Influences, 3rd ASME/JSME Joint Fluids Engineering Conference, FEDSM99-S295-01, 1999.
- Burton, T., Sharpe, D., Jenkins, N., Bossanyi, E., Wind Energy Handbook, John-Wiley and Sons, 2001.
- Hansen, M.O.L., Sorensen, J.N., Voutsinas, S., Sorensen, N., Madsen, H.Aa., State of the Art Wind Turbine Aerodynamics and Aeroelasticity, Progress in Aerospace Sciences, vol. 42, 2006, pp. 285 – 330.
- Reese, H., Kato, C., Carolus, T.H., Large Eddy Simulation of Acoustical Sources in a Low Pressure Axial-Flow Fan Encountering Highly Turbulent Flow, ASME Journal of Fluids Engineering, vol. 129, 2007, pp. 263 – 272.
- Gorla, R.S.R., Khan, A.A., Turbomachinery: Design and Theory, Marcel Dekker, 2003. Jimenez, A., Crespo, A., Migoya, E., Garcia J., Advances in Large Eddy Simulation of a Wind Turbine Wake, Journal of Physics: Conference Series, vol. 75, 2007.
- Pope, S.B.,Turbulent flow , Combridge University press, 2001.
- Wolfstein , M., Some Comments on Turbulence Modeling, International Jurnal of Heat and Mass Trensfer, vol.52,2009 , pp.4103-4107
- Tony Burton,David Sharpe,Nick Jenkins,Ervin Bossanyi, Wind Energy Handbook, JOHN WILEY & SONS, LTD, 2001.
Details
Primary Language
English
Subjects
Engineering
Journal Section
Research Article
Publication Date
March 12, 2015
Submission Date
June 30, 2014
Acceptance Date
-
Published in Issue
Year 2014 Volume: 26 Number: 2
APA
Kody, S., Alpman, E., & Yılmaz, B. (2015). Computational Studies of Horizontal Axis Wind Turbines Using Advanced Turbulence Models. Marmara Fen Bilimleri Dergisi, 26(2), 30-40. https://doi.org/10.7240/mufbed.00513
AMA
1.Kody S, Alpman E, Yılmaz B. Computational Studies of Horizontal Axis Wind Turbines Using Advanced Turbulence Models. MAJPAS. 2015;26(2):30-40. doi:10.7240/mufbed.00513
Chicago
Kody, Sebit, Emre Alpman, and Barış Yılmaz. 2015. “Computational Studies of Horizontal Axis Wind Turbines Using Advanced Turbulence Models”. Marmara Fen Bilimleri Dergisi 26 (2): 30-40. https://doi.org/10.7240/mufbed.00513.
EndNote
Kody S, Alpman E, Yılmaz B (March 1, 2015) Computational Studies of Horizontal Axis Wind Turbines Using Advanced Turbulence Models. Marmara Fen Bilimleri Dergisi 26 2 30–40.
IEEE
[1]S. Kody, E. Alpman, and B. Yılmaz, “Computational Studies of Horizontal Axis Wind Turbines Using Advanced Turbulence Models”, MAJPAS, vol. 26, no. 2, pp. 30–40, Mar. 2015, doi: 10.7240/mufbed.00513.
ISNAD
Kody, Sebit - Alpman, Emre - Yılmaz, Barış. “Computational Studies of Horizontal Axis Wind Turbines Using Advanced Turbulence Models”. Marmara Fen Bilimleri Dergisi 26/2 (March 1, 2015): 30-40. https://doi.org/10.7240/mufbed.00513.
JAMA
1.Kody S, Alpman E, Yılmaz B. Computational Studies of Horizontal Axis Wind Turbines Using Advanced Turbulence Models. MAJPAS. 2015;26:30–40.
MLA
Kody, Sebit, et al. “Computational Studies of Horizontal Axis Wind Turbines Using Advanced Turbulence Models”. Marmara Fen Bilimleri Dergisi, vol. 26, no. 2, Mar. 2015, pp. 30-40, doi:10.7240/mufbed.00513.
Vancouver
1.Sebit Kody, Emre Alpman, Barış Yılmaz. Computational Studies of Horizontal Axis Wind Turbines Using Advanced Turbulence Models. MAJPAS. 2015 Mar. 1;26(2):30-4. doi:10.7240/mufbed.00513
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