Suivre
Jerome Jacob
Jerome Jacob
Ingénieur de Recherche M2P2 - CNRS
Adresse e-mail validée de univ-amu.fr
Titre
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Année
A new hybrid recursive regularised Bhatnagar–Gross–Krook collision model for lattice Boltzmann method-based large eddy simulation
J Jacob, O Malaspinas, P Sagaut
Journal of Turbulence 19 (11-12), 1051-1076, 2018
1432018
Hybrid recursive regularized thermal lattice Boltzmann model for high subsonic compressible flows
Y Feng, P Boivin, J Jacob, P Sagaut
Journal of Computational Physics 394, 82-99, 2019
1152019
An explicit power-law-based wall model for lattice Boltzmann method–Reynolds-averaged numerical simulations of the flow around airfoils
S Wilhelm, J Jacob, P Sagaut
Physics of Fluids 30 (6), 2018
802018
Wind comfort assessment by means of large eddy simulation with lattice Boltzmann method in full scale city area
J Jacob, P Sagaut
Building and Environment 139, 110-124, 2018
692018
An efficient lattice Boltzmann method for compressible aerodynamics on D3Q19 lattice
S Guo, Y Feng, J Jacob, F Renard, P Sagaut
Journal of Computational Physics 418, 109570, 2020
672020
Solid wall and open boundary conditions in hybrid recursive regularized lattice Boltzmann method for compressible flows
Y Feng, S Guo, J Jacob, P Sagaut
Physics of Fluids 31 (12), 2019
492019
Lattice-Boltzmann Large-Eddy Simulation of pollutant dispersion in street canyons including tree planting effects
L Merlier, J Jacob, P Sagaut
Atmospheric Environment 195, 89-103, 2018
452018
Lattice-Boltzmann large-eddy simulation of pollutant dispersion in complex urban environment with dense gas effect: Model evaluation and flow analysis
L Merlier, J Jacob, P Sagaut
Building and Environment 148, 634-652, 2019
382019
Hybrid recursive regularized lattice Boltzmann simulation of humid air with application to meteorological flows
Y Feng, P Boivin, J Jacob, P Sagaut
Physical Review E 100 (2), 023304, 2019
332019
A new explicit algebraic wall model for les of turbulent flows under adverse pressure gradient
S Wilhelm, J Jacob, P Sagaut
Flow, Turbulence and Combustion 106 (1), 1-35, 2021
302021
Lattice-Boltzmann-based large-eddy simulation of high-rise building aerodynamics with inlet turbulence reconstruction
E Buffa, J Jacob, P Sagaut
Journal of Wind Engineering and Industrial Aerodynamics 212, 104560, 2021
232021
ProLB: A Lattice Boltzmann Solver of Large‐Eddy Simulation for Atmospheric Boundary Layer Flows
Y Feng, J Miranda‐Fuentes, S Guo, J Jacob, P Sagaut
Journal of Advances in Modeling Earth Systems 13 (3), e2020MS002107, 2021
212021
Grid refinement in the three-dimensional hybrid recursive regularized lattice Boltzmann method for compressible aerodynamics
Y Feng, S Guo, J Jacob, P Sagaut
Physical Review E 101 (6), 063302, 2020
212020
A multidisciplinary model coupling Lattice-Boltzmann-based CFD and a Social Force Model for the simulation of pollutant dispersion in evacuation situations
F Marlow, J Jacob, P Sagaut
Building and Environment 205, 108212, 2021
192021
Applications of the CEDRE unstructured flow solver to landing gear unsteady flow and noise predictions
F Vuillot, F Houssen, E Manoha, S Redonnet, J Jacob
17th AIAA/CEAS Aeroacoustics Conference (32nd AIAA Aeroacoustics Conference …, 2011
182011
Lattice Boltzmann method-based simulations of pollutant dispersion and urban physics
J Jacob, L Merlier, F Marlow, P Sagaut
Atmosphere 12 (7), 833, 2021
132021
Hybrid lattice Boltzmann model for atmospheric flows under anelastic approximation
Y Feng, J Miranda-Fuentes, J Jacob, P Sagaut
Physics of Fluids 33 (3), 2021
102021
Application of immersed boundary based turbulence wall modeling to the Ahmed body aerodynamics
SG Cai, S Mozaffari, J Jacob, P Sagaut
Physics of Fluids 34 (9), 2022
72022
A Lattice-Boltzmann-based modelling chain for traffic-related atmospheric pollutant dispersion at the local urban scale
M Pasquier, S Jay, J Jacob, P Sagaut
Building and Environment 242, 110562, 2023
52023
Immersed boundary based near-wall modeling for large eddy simulation of turbulent wall-bounded flow
SG Cai, J Jacob, P Sagaut
Computers & Fluids 259, 105893, 2023
32023
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