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Fournier Y, Bonelle J, Vezolle P, Heyman J, D'Amora B, Magerlein K, Magerlein J, Braudaway G, Moulinec C, Sunderland A. Multiple threads and parallel challenges for large simulations to accelerate a general Navier–Stokes CFD code on massively parallel systems. Concurrency and Computation: Practice and Experience. 2013 ;25:843–861.
Fournier Y, Bonelle J, Moulinec C, Shang Z, Sunderland AG, Uribe JC. Optimizing Code_Saturne computations on Petascale systems. Computers & Fluids [Internet]. 2011 ;45(1):103-108. Available from: http://www.sciencedirect.com/science/article/pii/S0045793011000351
Fournier Y, Jeannot E, Lorendeau B. Experiments with multi-level parallelism runtimes on a CFD code with unstructured meshes. In: ParCFD 2017 - 29th International Conference on Parallel Computational Fluid Dynamics. ParCFD 2017 - 29th International Conference on Parallel Computational Fluid Dynamics. Glasgow, United Kingdom; 2017. Available from: https://hal.inria.fr/hal-01667320
Fournier Y, Vurpillot C, Béchaud C. Evaluation of fluid flow in the lower core of a PWR with Code_Saturne. Nuclear Engineering and Design [Internet]. 2007 ;237(15-17):1729-1744. Available from: http://www.sciencedirect.com/science/article/pii/S0029549307002178
Fournier Y, Bonelle J, Le Coupanec E, Ribes A, Lorendeau B, Moulinec C. Recent and Upcoming Changes in Code_Saturne: Computational Fluid Dynamics HPC Tools Oriented Features. In: Fourth International Conference on Parallel, Distributed, Grid and Cloud Computing for Engineering. Fourth International Conference on Parallel, Distributed, Grid and Cloud Computing for Engineering. Dubrovnik, Croatia: Civil-Comp Press, Stirlingshire, UK; 2015.
Fournier Y, Bonelle J, Vezolle P, Moulinec C, Sunderland AG. An Automatic Joining Mesh Approach for Computational Fluid Dynamics to Reach a Billion Cell Simulations. In: Iv{\'a}nyi P, Topping B Second International Conference on Parallel, Distributed, Grid and Cloud Computing for Engineering. Second International Conference on Parallel, Distributed, Grid and Cloud Computing for Engineering. Pécs, Hungary: Civil-Comp Press, Stirlingshire, UK; 2011.
Flavien B. Development of a robust elliptic-blending turbulence model for near-wall, separated and buoyant flows. University of Manchester [Internet]. 2011 ;Doctor of Philosophy. Available from: http://cfd.mace.manchester.ac.uk/twiki/bin/view/CfdTm/ResPub281
Flageul C, Tiselj I, Benhamadouche S, Ferrand M. A Correlation for the Discontinuity of the Temperature Variance Dissipation Rate at the Fluid-Solid Interface in Turbulent Channel Flows. {Flow, Turbulence and Combustion} [Internet]. 2019 . Available from: https://hal.archives-ouvertes.fr/hal-01995617
Fichet V, Kanniche M, Gicquel O, Plion P. A reactor network model for predicting NOx emissions in gas turbines. Fuel . 2010 ;89.
Fichet V. Modélisation de la combustion du gaz naturel par réseaux de réacteurs avec cinétique chimique détaillée. [Internet]. 2008 ;PhD Thesis, Ecole Centrale Paris. Available from: http://tel.archives-ouvertes.fr/tel-00549790/
Ferrand M, Fontaine J, Angelini O. An Anisotropic Diffusion Finite Volume Algorithm Using a Small Stencil. In: Fuhrmann J, Ohlberger M, Rohde C Finite Volumes for Complex Applications VII-Elliptic, Parabolic and Hyperbolic Problems. Finite Volumes for Complex Applications VII-Elliptic, Parabolic and Hyperbolic Problems. Cham: Springer International Publishing; 2014.
Fadai-Ghotbi A. Modélisation de la turbulence en situation instationnaire par approches URANS et HYBRIDE RANS-LES. Prise en compte des effets de paroi par pondération elliptique. [Internet]. 2007 ;PhD Thesis, Université de Poitiers. Available from: http://tel.archives-ouvertes.fr/tel-00163592/en/