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Simulated pulsed flow of gas and particles in a horizontal oppose-pulsed gas jets of bubbling fluidized bed
Authors:Muhammad Hassan
Affiliation:1. School of Energy Science and Engineering, Harbin Institute of Technology, Harbin 150001, China;2. China Special Equipment Inspection and Research Institute, Beijing 100029, China;3. Center for Advanced Studies in Energy, University of Engineering and Technology Peshawar, 25000, Pakistan
Abstract:Flow behavior of gas and particles with a horizontal oppose-pulsed gas jets are simulated by means of a three dimensional Computational Fluid Dynamics (CFD) model with the kinetic theory of granular flow in a gas-particles bubbling fluidized bed. The effects of amplitudes and frequencies on the hydrodynamics of gas and particles are analyzed. The simulation results are presented in terms of phase velocity vector plot, volume fraction of phases, granular temperature, power spectrum and Reynolds stresses in the bed. Results show that the impingement caused by the oppose-pulsed gas jets oscillates with the variation of pulsed gas velocity. The impingement zone with the high solid volume fraction reciprocates from the left side to the right side through the bed center with the variation of pulsed jet gas velocities. The lateral velocity and gas turbulent kinetic energy, granular temperature and Reynolds stresses of gas and particles are larger near the pulsed gas jets than that at the center of the bed. The large dispersion coefficients of particles using the horizontal oppose-pulsed gas jets enhance the mixing of particles in gas-solid fluidized bed.
Keywords:Gas-particle flow  Oppose-pulsed gas jets  Fluidization  Computational fluid dynamics  Reynolds stress
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