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- W2291850152 abstract "Original Research Paper Received 15 April 2015 Accepted 21 May 2015 Available Online 20 June 2015 Phenomenon of dispersion and deposition of nanoand micro-particles in turbulent flows have been focused on in the past decades. In this paper, particle dispersion and deposition in gasparticle two-phase turbulent flow inside two-dimensional channel with rectangular artificial roughness is studied using an Eulerian–Lagrangian method. The RSM turbulence model with enhanced wall treatment was used to simulate the anisotropic turbulent gas phase flow. The gas phase flow predictions were validated by comparing the results with available experimental data for fully developed asymmetric turbulent channel flow. In discrete phase, Lagrangian approach was applied for particle tracking. The Lagrangian equation of particle motion includes drag, gravity, Saffman lift, and Brownian forces. The particle phase simulation results were validated by comparing the present work with available equations and valid data for gas particles turbulent flow inside two-dimensional smooth channel. The gas phase simulation results show that by increasing the artificial roughness height, recirculation region that is created in the space between two ribs, becomes larger. The particle phase results show that the rate of deposition in the channel with artificial roughness is function of gravity force and flow pattern in the mentioned space. The rate of deposition for small particle is affected significantly by gas flow pattern in the space between two ribs. However, for large particles the gravity force is more dominant." @default.
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- W2291850152 date "2015-01-01" @default.
- W2291850152 modified "2023-09-26" @default.
- W2291850152 title "NUMERICAL STUDY ON DISPERSION AND DEPOSITION OF NANO AND MICRO SPHERICAL PARTICLES IN TURBULENT INCOMPRESSIBLE GAS FLOW INSIDE CHANNEL WITH ARTIFICIAL ROUGHNESS" @default.
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