Lattice Boltzmann k-ω SST based hybrid RANS/LES simulations of turbulent flows

Author:

Mozaffari Sajad,Cai Shang-GuiORCID,Jacob Jérôme,Sagaut Pierre

Publisher

Elsevier BV

Reference67 articles.

1. Some salient features of the time-averaged ground vehicle wake;Ahmed;SAE Transact.,1984

2. Analysis and reduction of spurious noise generated at grid refinement interfaces with the lattice Boltzmann method;Astoul;J. Comput. Phys.,2020

3. Benchmarking a lattice-Boltzmann solver for reactive flows: is the method worth the effort for combustion?;Boivin;Phys. Fluids,2021

4. Validation of 3-D ice accretion measurement methodology for experimental aerodynamic simulation;Broeren,2014

5. Lattice-Boltzmann-based large-eddy simulation of high-rise building aerodynamics with inlet turbulence reconstruction;Buffa;J. Wind Eng. Ind. Aerodyn.,2021

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