Lattice Boltzmann simulation of plume behavior from an eccentric annulus cylinder

In this paper, a double-population thermal lattice Boltzmann was applied to solve two dimensional, incompressible, thermal fluid flow problems. The simplest lattice BGK D2Q4 model was applied to determine the temperature field while D2Q9 for the density and velocity fields. The simulation of natural...

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Bibliographic Details
Main Authors: Samion, Syahrullail (Author), Che Sidik, Nor Azwadi (Author), Osman, Shahrul Azmir (Author)
Format: Article
Language:English
Published: University of Malaya, 2010.
Subjects:
Online Access:Get fulltext
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042 |a dc 
100 1 0 |a Samion, Syahrullail  |e author 
700 1 0 |a Che Sidik, Nor Azwadi  |e author 
700 1 0 |a Osman, Shahrul Azmir  |e author 
245 0 0 |a Lattice Boltzmann simulation of plume behavior from an eccentric annulus cylinder 
260 |b University of Malaya,   |c 2010. 
856 |z Get fulltext  |u http://eprints.utm.my/id/eprint/26287/1/NorAzwadiCheSidik2010_LatticeBoltzmannSimulationofPlumeBehavior.pdf 
520 |a In this paper, a double-population thermal lattice Boltzmann was applied to solve two dimensional, incompressible, thermal fluid flow problems. The simplest lattice BGK D2Q4 model was applied to determine the temperature field while D2Q9 for the density and velocity fields. The simulation of natural convection from a concentrically and eccentrically placed inner heated cylinder inside cold outer cylinder with Prandtl number 0.71 and Rayleigh number 5 x was observed that the combination of D2Q4 and D2Q9 10 5 were carried out and discussed quantitatively. It was able to reproduce the effect of buoyancy force in the system. We also found that the flow pattern including the boundary layers and vortices with heat transfer mechanisms is significantly influenced by the position of heated cylinder in the enclosure and excellent comparisons with previous studies. 
546 |a en 
650 0 4 |a TJ Mechanical engineering and machinery