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Comparative study of the prediction of high angle of attack phenomena using transitional turbulence models

Jolan Wauters (UGent) , Joris Degroote (UGent) and Jan Vierendeels (UGent)
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MLA
Wauters, Jolan, Joris Degroote, and Jan Vierendeels. “Comparative Study of the Prediction of High Angle of Attack Phenomena Using Transitional Turbulence Models.” 7th European Conference on Computational Fluid Dynamics. 2018. Print.
APA
Wauters, Jolan, Degroote, J., & Vierendeels, J. (2018). Comparative study of the prediction of high angle of attack phenomena using transitional turbulence models. 7th European Conference on Computational Fluid Dynamics. Presented at the 7th European Conference on Computational Fluid Dynamics.
Chicago author-date
Wauters, Jolan, Joris Degroote, and Jan Vierendeels. 2018. “Comparative Study of the Prediction of High Angle of Attack Phenomena Using Transitional Turbulence Models.” In 7th European Conference on Computational Fluid Dynamics.
Chicago author-date (all authors)
Wauters, Jolan, Joris Degroote, and Jan Vierendeels. 2018. “Comparative Study of the Prediction of High Angle of Attack Phenomena Using Transitional Turbulence Models.” In 7th European Conference on Computational Fluid Dynamics.
Vancouver
1.
Wauters J, Degroote J, Vierendeels J. Comparative study of the prediction of high angle of attack phenomena using transitional turbulence models. 7th European Conference on Computational Fluid Dynamics. 2018.
IEEE
[1]
J. Wauters, J. Degroote, and J. Vierendeels, “Comparative study of the prediction of high angle of attack phenomena using transitional turbulence models,” in 7th European Conference on Computational Fluid Dynamics, Glasgow, United Kingdom, 2018.
@inproceedings{8587279,
  author       = {Wauters, Jolan and Degroote, Joris and Vierendeels, Jan},
  booktitle    = {7th European Conference on Computational Fluid Dynamics},
  isbn         = {9788494731167},
  language     = {eng},
  location     = {Glasgow, United Kingdom},
  pages        = {12},
  title        = {Comparative study of the prediction of high angle of attack phenomena using transitional turbulence models},
  year         = {2018},
}