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Berlemont
Berlemont
Directeur de Recherche CNRS Rouen
Adresă de e-mail confirmată pe coria.fr
Titlu
Citat de
Citat de
Anul
Coupling level set/VOF/ghost fluid methods: Validation and application to 3D simulation of the primary break-up of a liquid jet
T Ménard, S Tanguy, A Berlemont
International Journal of Multiphase Flow 33 (5), 510-524, 2007
7732007
Particle Lagrangian simulation in turbulent flows
A Berlemont, P Desjonqueres, G Gouesbet
International Journal of Multiphase Flow 16 (1), 19-34, 1990
4671990
Numerical simulation of primary break-up and atomization: DNS and modelling study
R Lebas, T Menard, PA Beau, A Berlemont, FX Demoulin
International Journal of Multiphase Flow 35 (3), 247-260, 2009
4162009
A level set method for vaporizing two-phase flows
S Tanguy, T Ménard, A Berlemont
Journal of Computational Physics 221 (2), 837-853, 2007
3692007
Eulerian and Lagrangian approaches for predicting the behaviour of discrete particles in turbulent flows
G Gouesbet, A Berlemont
Progress in Energy and Combustion Science 25 (2), 133-159, 1999
2811999
Application of a level set method for simulation of droplet collisions
S Tanguy, A Berlemont
International journal of multiphase flow 31 (9), 1015-1035, 2005
2722005
Heat and mass transfer coupling between vaporizing droplets and turbulence using a Lagrangian approach
A Berlemont, MS Grancher, G Gouesbet
International journal of heat and mass transfer 38 (16), 3023-3034, 1995
1311995
Modelling and predicting turbulence fields and the dispersion of discrete particles transported by turbulent flows
A Picart, A Berlemont, G Gouesbet
International journal of multiphase flow 12 (2), 237-261, 1986
1191986
On the Lagrangian simulation of turbulence influence on droplet evaporation
A Berlemont, MS Grancher, G Gouesbet
International journal of heat and mass transfer 34 (11), 2805-2812, 1991
1151991
A consistent mass and momentum flux computation method for two phase flows. Application to atomization process
G Vaudor, T Ménard, W Aniszewski, M Doring, A Berlemont
Computers & Fluids 152, 204-216, 2017
1012017
Dispersion of discrete particles by continuous turbulent motions. Extensive discussion of the Tchen’s theory, using a two‐parameter family of Lagrangian correlation functions
G Gouesbet, A Berlemont, A Picart
The Physics of fluids 27 (4), 827-837, 1984
821984
DNS analysis of turbulent mixing in two-phase flows
B Duret, G Luret, J Reveillon, T Ménard, A Berlemont, FX Demoulin
International Journal of Multiphase Flow 40, 93-105, 2012
732012
Les phobies ou l'impossible séparation
I Diamantis
Aubier-Flammarion, 2003
492003
Validation of inter-particle collision models based on Large Eddy Simulation in gas-solid turbulent homogeneous shear flow
J Lavieville, O Simonin, A Berlemont, Z Chang
Proc. 7th Int. Symp. on Gas-particle Flows, ASME Fluids Eng. Division Summer …, 1997
461997
Dispersion of discrete particles by continuous turbulent motions: new results and discussions
P Desjonqueres, G Gouesbet, A Berlemont, A Picart
The Physics of fluids 29 (7), 2147-2151, 1986
401986
A massively parallel accurate conservative level set algorithm for simulating turbulent atomization on adaptive unstructured grids
R Janodet, C Guillamón, V Moureau, R Mercier, G Lartigue, P Bénard, ...
Journal of Computational Physics 458, 111075, 2022
342022
Modélisation du soudage par résistance par points
E Thieblemont
Institut National Polytechnique de Lorraine, 1992
331992
A 3D Moment of Fluid method for simulating complex turbulent multiphase flows
AA Mukundan, T Ménard, JCB De Motta, A Berlemont
Computers & Fluids 198, 104364, 2020
322020
Lagrangian approaches for particle collisions: The colliding particle velocity correlation in the multiple particles tracking method and in the stochastic approach
A Berlemont, P Achim, Z Chang
Physics of fluids 13 (10), 2946-2956, 2001
292001
DNS and LES of primary atomization of turbulent liquid jet injection into a gaseous crossflow environment
AA Mukundan, G Tretola, T Ménard, M Herrmann, S Navarro-Martinez, ...
Proceedings of the Combustion Institute 38 (2), 3233-3241, 2021
282021
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