Numerical modeling of a two-dimensional vertical turbulent two-phase jet

被引:1
|
作者
Kartushinskii, A. I.
Michaelides, E. E.
Rudi, Yu. A.
Tisler, S. V.
Shcheglov, I. N.
机构
关键词
flow of the "gas-solid particles; type; vertical jet; gravity; modification of turbulence; AXISYMMETRICAL JET; ROUND JET; PARTICLE; FLOWS; MODULATION; SIMULATION; ADMIXTURE; PIPE;
D O I
10.1134/S0015462812060099
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The results of numerically modeling two-dimensional two-phase flow of the "gas-solid particles" type in a vertical turbulent jet are presented for three cases of its configuration, namely, descending, ascending, and without account of gravity. Both flow phases are modeled on the basis of the Navier-Stokes equations averaged within the framework of the Reynolds approximation and closed by an extended k-E > turbulence model. The averaged two-phase flow parameters (particle and gas velocities, particle concentration, turbulent kinetic energy, and its dissipation) are described using the model of mutually-penetrating continua. The model developed allows for both the direct effect of turbulence on the motion of disperse-phase particles and the inverse effect of the particles on turbulence leading to either an increase or a decrease in the turbulent kinetic energy of the gas. The model takes account for gravity, viscous drag, and the Saffman lift. The system of equations is solved using a difference method. The calculated results are in good agreement with the corresponding experimental data which confirms the effect of solid particles on the mean and turbulent characteristics of gas jets.
引用
收藏
页码:769 / 777
页数:9
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