Title of article
Large eddy simulation of gas-particle turbulent channel flow with momentum exchange between the phases
Author/Authors
C.D. Dritselis، نويسنده , , Chris D. and Vlachos، نويسنده , , Nicholas S.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
16
From page
706
To page
721
Abstract
This paper presents results of a large eddy simulation (LES) combined with Lagrangian particle tracking and a point-force approximation for the feedback effect of particles on the downward turbulent gaseous flow in a vertical channel. The LES predictions are compared with the results obtained by direct numerical simulation (DNS) of a finer computational mesh. A parametric study is conducted for particles with two response times in simulations with and without streamwise gravitational settling and elastic, binary interparticle collisions. It is shown that the classical and the dynamic Smagorinsky turbulence models adequately predict the particle-induced changes in the mean streamwise velocity and the Reynolds stresses of the carrier phase for the range of parameters studied. However, the largest discrepancies between the LES and DNS results are found in the cases of particle-laden flows. Conditional sampling of the instantaneous resolved flow fields indicates that the mechanisms by which particles directly oppose the production of momentum and vorticity of the organized fluid motions are also observed in the LES results. However, the geometric features of the near-wall quasistreamwise vortices are overestimated by the use of both turbulence models compared to the DNS predictions.
Keywords
Large eddy simulation , Turbulent channel flow , Point forces , two-way coupling
Journal title
International Journal of Multiphase Flow
Serial Year
2011
Journal title
International Journal of Multiphase Flow
Record number
1410616
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