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1.Lian GAN, Andrea MAFFIOLIorcid_16x16.png (2018).
The size and lifetime of organised eddies in a non-solid-body rotating turbulence experiment
Eur. J. Mech. B-Fluids . doi:10.1016/j.euromechflu.2018.10.026 doi.ico clarivate_16x16.png
2.Stéphane MOREAU, Michel ROGER (2018).
Advanced noise modeling for future propulsion systems
Int. J. Aeroacoustics 17, 576–599. doi:10.1177/1475472X18789005 doi.ico clarivate_16x16.png
3.Yassine SAADLAOUI, Éric FEULVARCH, Alexandre DELACHE, Jean-Baptiste LEBLOND, Jean-Michel BERGHEAU (2018).
A new strategy for the numerical modeling of a weld pool
C. R. Méc. 346, 999–1017. doi:10.1016/j.crme.2018.08.007 doi.ico clarivate_16x16.png
4.Olivier SOULARD, Florian GUILLOIS, Jérôme GRIFFOND, Vladimir A. SABELNIKOV, Serge SIMOËNSorcid_16x16.png (2018).
Permanence of large eddies in Richtmyer-Meshkov turbulence with a small Atwood number
Phys. Rev. Fluids 3, 104603 (36 pages). doi:10.1103/PhysRevFluids.3.104603 doi.ico clarivate_16x16.png
5.Rafik OUCHENE, Juan Ignacio POLANCO, Ivana VINKOVIC, Serge SIMOËNSorcid_16x16.png (2018).
Acceleration statistics of prolate spheroidal particles in turbulent channel flow
J. Turbul. 19, 827–848. doi:10.1080/14685248.2018.1516043 doi.ico clarivate_16x16.png
6.Florian GUILLOIS (dir.: Serge SIMOËNS, Olivier SOULARD, Vladimir A. SABELNIKOV) (2018).
Simulation d’une zone de mélange turbulente issue de l’instabilité de Richtmyer-Meshkov à l’aide d’un modèle à fonction de densité de probabilité – Analyse du transport de l’énergie turbulente
Thèse École centrale de Lyon
7.Jan Tobias HORSTMANN (dir.: Emmanuel LÉVÊQUE, Thomas LE GARREC) (2018).
Méthodes numériques hybrides basées sur une approche Boltzmann sur réseau en vue de l’application aux maillages non-uniformes
Thèse École centrale de Lyon
8.Claude CAMBON, Julian F. SCOTT (1999).
Linear and non linear models of anisotropic turbulence.
Annu. Rev. Fluid Mech. 31, 1–53. doi:10.1146/annurev.fluid.31.1.1 doi.ico clarivate_16x16.png
9.Denis MARTINAND, Philippe CARRIÈRE, Peter A. MONKEWITZ (2006).
Three dimensional global instability modes associated with a localized hot spot in Rayleigh-Bénard-Poiseuille convection
J. Fluid Mech. 551, 275–301. doi:10.1017/S0022112005008323 doi.ico hal.ico clarivate_16x16.png
10.Clément PERROT-MINOT, Emmanuel MIGNOT, Nicolas RIVIÈRE, Diego LOPEZ, Richard J. PERKINS (2018).
Vortex shedding frequency at the interface of a lateral cavity to a open channel flow
12th European Fluid Mechanics Conference, Vienna, Austria.
 

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