F. T. Lynch and A. Khodadoust, Effects of ice accretions on aircraft aerodynamics, Progress in Aerospace Sciences, vol.37, pp.669-767, 2001.

M. B. Bragg, A. P. Broeren, and L. A. Blumenthal, Iced-airfoil aerodynamics, Progress in Aerospace Sciences, vol.41, pp.323-362, 2005.

X. Chi, B. Zhu, T. Shih, J. W. Slater, H. E. Addy et al., Computing aerodynamic performance of a 2D iced airfoil: blocking topology and grid generation, 2002.

J. Chung, A. Reehorst, Y. Choo, M. Potapczuk, and J. Slater, Navier-Stokes analysis of flowfield characteristics of an ice-contaminated aircraft wing, Journal of aircraft, vol.37, issue.6, pp.947-959, 2000.

T. A. Dunn, E. Loth, and M. B. Bragg, Computational investigation of simulated large-droplet ice shapes on airfoil aerodynamics, Journal of aircraft, vol.36, issue.5, pp.836-843, 1999.

S. Kumar and E. Loth, Aerodynamic simulations of airfoils with upper-surface ice-shapes, Journal of aircraft, vol.38, issue.2, pp.285-295, 2001.

J. Pan and E. Loth, Reynolds-averaged Navier-Stokes simulations of airfoils and wings with ice shapes, Journal of aircraft, vol.41, issue.4, pp.879-891, 2004.

S. Kumar and E. Loth, Detached eddy simulations of an iced-airfoil, AIAA, Aerospace Sciences Meeting and Exhibit, vol.39, 2001.

J. Pan and E. Loth, Detached eddy simulations for iced airfoils, Journal of aircraft, vol.42, issue.6, pp.1452-1461, 2005.

X. Chi, B. Zhu, T. Shih, H. E. Addy, and Y. K. Choo, CFD analysis of the aerodynamics of a business-jet airfoil with leading-edge ice accretion, 42 nd Aerospace Sciences Meeting & Exhibit, 2004.

M. F. Alam, D. K. Walters, and D. S. Thompson, Simulations of separated flow around an airfoil with ice shape using hybrid RANS/LES models, 29th AIAA Applied Aerodynamics Conference, 2011.

M. F. Alam, D. S. Thompson, and D. Walters, Hybrid Reynolds-averaged Navier

/. Stokes and . Large-eddy, Simulation models for flow around an iced wing, Journal of aircraft, vol.52, issue.1, pp.244-256, 2015.

M. Duclercq, V. Brunet, and F. Moëns, Physical Analysis of the Separated Flow Around an Iced Airfoil Based on ZDES Simulations, AIAA Paper 2012-2798, 4 th AIAA Atmospheric & Space Environment Conference, pp.25-28, 2012.

Y. Zhang, W. G. Habashi, and R. A. Khurram, Zonal Detached-Eddy Simulation of Turbulent Unsteady Flow over Iced Airfoils, Journal of Aircraft, pp.1-14, 2015.

M. Xiao, Y. Zhang, and H. Chen, Numerical study of an iced airfoil based on Delayed DetachedEddy Simulation with low dissipation scheme, th AIAA Atmospheric and Space Environments Conference, 2017.

A. F. Ribeiro, D. Singh, B. König, and E. Fares, On the sall characteristics of iced wings, th AIAA Aerospace Sciences Meeting, vol.55, 2017.

E. Fares, B. Duda, A. F. Ribeiro, and B. König, Scale-resolving simulations using a lattice Boltzmann-based approach, CEAS Aeronautical Journal, 2018.

M. B. Bragg, A. P. Broeren, H. E. Addy, . Jr, M. G. Potapczuk et al., Airfoil ice-accretion aerodynamics simulation

A. P. Broeren, M. B. Bragg, H. E. Addy, . Jr, S. Lee et al., Effect of High-Fidelity Ice-Accretion Simulations on Full-Scale Airfoil Performance, Journal of Aircraft, vol.47, issue.1, pp.240-254, 2010.

M. Costes, F. Moens, and V. Brunet, Prediction of iced airfoil aerodynamic characteristics, AIAA paper 2016-1547, 54 th AIAA Aerospace Sciences Meeting, 2016.

M. Costes and F. Moens, Advanced prediction of iced airfoil aerodynamics, AIAA paper 2018-0782, 56 th AIAA Aerospace Sciences Meeting, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02174947

M. Costes and F. Moens, Prediction of airfoil performance degradation due to ice accretion, 53 rd 3AF International Conference on Applied Aeodynamics, 2018.

L. Cambier, S. Heib, and S. Plot, The ONERA elsA CFD software: input from research and feedback from industry, Mechanics&Industry, vol.14, pp.159-174, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01293795

M. Liou and J. R. Edwards, AUSM schemes and extensions for low Mach and multiphase flows", 30 th CFD Von Karman Lecture Series, pp.1999-2002, 1999.

P. R. Spalart, A. , and S. R. , A One-Equation Model for Aerodynamic Flows, 30th AIAA Aerospace Sciences Meeting and Exhibit, 1992.

F. R. Menter, Two-equation eddy-viscosity transport turbulence model for engineering applications, AIAA Journal, vol.32, issue.8, pp.1598-1605, 1994.

A. Hellsten, New two-equation turbulence model for aerodynamics applications

C. G. Speziale, S. Sarkar, and T. B. Gatski, Modelling the Pressure-Strain Correlation of Turbulence: An Invariant Dynamical System Approach, Journal of Fluid Mechanics, vol.227, pp.245-272, 1991.

B. E. Launder, G. J. Reece, and W. Rodi, Preogress in the development of a Reynolds-stress turbulence closure, J. Fluid Mech, vol.68, pp.537-566, 1975.

S. Deck, Recent improvements in the Zonal Detached Eddy Simulation (ZDES) formulation, Theor. Comput. Fluid Dyn, vol.26, issue.6, pp.523-550, 2012.

S. Deck, F. Gand, V. Brunet, B. Khelil, and S. , High-fidelity simulations of unsteady civil aircraft aerodynamics: stakes and perspectives. Application of zonal detached eddy simulation, Phil.Trans.R.Soc.A, vol.372, 2014.

P. R. Spalart, W. Jou, M. Strelets, and S. R. Allmaras, Comments on the feasibility of LES for wings,and on a hybrid RANS/LES approach, Advances in DNS/LES, pp.137-147, 1997.

J. Chung, A. L. Reehorst, Y. K. Choo, and M. G. Potapczuk, Effect of airfoil ice shape smoothing on the aerodynamic performance, 34th AIAA/ASME/SAE/ASEE Joint Propulsion Conference and Exhibit, 1998.

B. Aupoix and P. R. Spalart, Extensions of the Spalart-Allmaras turbulence model to account for wall roughness, Int. Journal of Heat and Fluid Flow, vol.24, pp.454-462, 2003.

A. P. Broeren, H. E. Addy, . Jr, M. B. Bragg, G. T. Busch et al., Aerodynamic Simulation of Ice Accretion on Airfoils, 2011.

J. Shin, Characteristics of surface roughness associated with leading-edge ice accretion, Journal of Aircraft, vol.33, issue.2, pp.316-321, 1996.

P. D. Welch, The Use of Fast Fourier Transform for the Estimation of Power Spectra: A Method Based on Time Averaging over Short Modified Periodograms, IEEE Trans. Audio. Electroacoustic, vol.15, issue.2, pp.70-73, 1967.

P. Huerre and M. Rossi, Hydrodynamic instabilities in open flow, Hydrodynamics and Nonlinear Instabilities, pp.81-214, 1998.

P. Sagaut, S. Deck, and M. Terracol, Multiscale and multiresolution approaches in turbulence
URL : https://hal.archives-ouvertes.fr/hal-01313533

D. Les and R. Hybrid, LES methods: applications and guidelines, 2013.