Carton de Wiart, C., Hillewaert, K., Bricteux, L., and Winckelmans, G. (2015). Implicit les of free and wall-bounded turbulent flows based on the discontinuous galerkin/symmetric interior penalty method. International Journal for Numerical Methods in Fluids, 78(6):335-354.
Carton de Wiart, C., Hillewaert, K., Duponcheel, M., and Winckelmans, G. (2014). Assessment of a discontinuous galerkin method for the simulation of vortical flows at high reynolds number. International Journal for Numerical Methods in Fluids, 74(7):469-493.
Cockburn, B., Karniadakis, G. E., and Shu, C.-W. (2012). Discontinuous Galerkin methods: theory, computation and applications, volume 11. Springer Science & Business Media.
Cocle, R., Bricteux, L., and Winckelmans, G. (2009). Scale dependence and asymptotic very high reynolds number spectral behavior of multiscale subgrid models. Physics of Fluids, 21(8):085101.
Dhamankar, N. S., Blaisdell, G. A., and Lyrintzis, A. S. (2018). Overview of turbulent inflow boundary conditions for large-eddy simulations. Aiaa Journal, 56(4):1317-1334.
Duraisamy, K., Iaccarino, G., and Xiao, H. (2019). Turbulence modeling in the age of data. Annual review of fluid mechanics, 51:357-377.
Fard Afshar, N., Kozulovic, D., Henninger, S., Deutsch, J., and Bechlars, P. (2023). Turbulence anisotropy analysis at the middle section of a highly loaded 3d linear turbine cascade using large eddy simulation. Journal of the Global Power and Propulsion Society, 7:71-84.
Gerolymos, G. and Vallet, I. (2001). Wall-Normal-Free Reynolds-Stress Closure for Three-Dimensional Compressible Separated Flows. AIAA Journal, 39(10):1833-1842.
Geuzaine, C. and Remacle, J.-F. (2009). Gmsh: A 3-d finite element mesh generator with built-in pre-and post-processing facilities. International journal for numerical methods in engineering, 79(11):1309-1331.
Hillewaert, K. and Rodi, W. (2022). List of desirable and minimum quantities to be entered into the KB Wiki. ERCOFTAC KB WIKI (https://kbwiki-images.s3.amazonaws.com/8/80/List_of_desirable_and_minimum_quantities_to_be_entered_into_the_KB_Wiki.pdf).
Hunt, J. and Savill, A. (2005). Guidelines and criteria for the use of turbulence models in complex flows. Prediction of turbulent flows, 340:291-343.
Keating, A. and Piomelli, U. (2006). A dynamic stochastic forcing method as a wall-layer model for large-eddy simulation. Journal of Turbulence, 7:N12.
Knight, D. D. (1997). Numerical simulation of compressible turbulent flows using the Reynolds-Averaged Navier-Stokes equations. In AGARD FDP Special Course on”Turbulence in Compressible Flows”, volume AGARD-R-819, von Karman Institute for Fluid Dynamics, Rhode-St-Genèse, Belgium. AGARD.
Kreuzinger, J., Friedrich, R., and Gatski, T. (2006). Compressibility effects in the solenoidal dissipation rate equation: A priori assessment and modeling. International Journal of Heat and Fluid Flow, 27:696-706.
Larsson, J. (2009). Blending technique for compressible inflow turbulence: Algorithm localization and accuracy assessment. Journal of Computational Physics, 228(4):933-937.
Menter, F. R., Kuntz, M., and Langtry, R. (2003). Ten years of industrial experience with the sst turbulence model. Turbulence, heat and mass transfer, 4(1):625-632.
Passot, T. and Pouquet, A. (1987). Numerical simulation of compressible homogeneous flows in the turbulent regime. Journal of Fluid Mechanics, 181:441-466.
Pope, S. B. (2000). Turbulent flows. Cambridge University Press.
Rasquin, M., Bauer, A., and Hillewaert, K. (2019). Scientific post hoc and in situ visualisation of high-order polynomial solutions from massively parallel simulations. International Journal of Computational Fluid Dynamics, 33(4):171-180.
Rogallo, R. S. (1981). Numerical experiments in homogeneous turbulence. Technical Memorandum NASA-TM-81315, NASA Ames.
Spalart, P. (2010). Reflections on rans modelling. In Progress in hybrid RANS-LES modelling, pages 7-24. Springer.
Vincent, P., Witherden, F., Vermeire, B., Park, J. S., and Iyer, A. (2016). Towards green aviation with python at petascale. In SC'16: Proceedings of the International Conference for High Performance Computing, Networking, Storage and Analysis, pages 1-11. IEEE.
Wilcox, D. C. et al. (1998). Turbulence modeling for CFD, volume 2. DCW industries La Canada, CA.