DocumentCode :
3756445
Title :
Validation of a Dynamically Adaptive Lattice Boltzmann Method for 2D Thermal Convection Simulations
Author :
Kai Feldhusen;Ralf Deiterding;Claus Wagner
Author_Institution :
German Aerosp. Center, Inst. of Aerodynamics &
fYear :
2015
Firstpage :
199
Lastpage :
206
Abstract :
Utilizing the Boussinesq approximation, a double-population thermal lattice Boltzmann method (LBM) for forced and natural convection in two space dimensions is developed and validated. A block-structured dynamic adaptive mesh refinement procedure tailored for LBM is applied to enable computationally efficient simulations of high Rayleigh number configurations which are characterized by a large scale disparity in boundary layers and free stream flow. As test cases, the analytically accessible problem of a two-dimensional (2D) forced convection flow through two porous plates and the non-Cartesian configuration of a heated rotating cylinder are considered. The effectiveness of the overall approach is demonstrated for the 2D natural convection benchmark of a cavity with differentially heated walls at Rayleigh numbers from 103 up to 108.
Keywords :
"Mathematical model","Lattice Boltzmann methods","Convection","Heating","Distribution functions","Force","Thermal force"
Publisher :
ieee
Conference_Titel :
Mathematics and Computers in Sciences and in Industry (MCSI), 2015 Second International Conference on
Type :
conf
DOI :
10.1109/MCSI.2015.60
Filename :
7423965
Link To Document :
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