Numerical Study of the Dynamics of Particles Motion with Different Sizes from Coal-Based Thermal Power Plant

Author:

Issakhov Alibek12,Bulgakov Ruslan1,Zhandaulet Yeldos1

Affiliation:

1. al-Farabi Kazakh National University , Almaty , Republic of Kazakhstan

2. Kazakh British Technical University , Almaty , Republic of Kazakhstan

Abstract

Abstract In this paper, the propagation of particles with different sizes from a coal-based thermal power plant was investigated. It was found that the deterioration of the environment is due to the release of a large amount of SOx, NOx and the volatile particles of Suspended Particulate Matter and Respirable Suspended Particles matter, which cause human and animal diseases. This paper presents the numerical simulation results of air pollution by particles which having different sizes from thermal power plants in real sizes using a 3D model. For the adequacy of the mathematical model, a test problem was solved using different turbulent models. To assess the applicability of the mathematical model, the numerical algorithm and the choice of the optimal turbulent model, experimental data and numerical results of other authors were used. The obtained numerical simulation results are in good agreement with the experimental results and the numerical results of other authors. And to obtain more accurate numerical results for the experimental data for turbulent models ( k ε $k - \varepsilon $ , k ω $k - \omega $ ), there were certain corresponding boundary conditions for kinetic energy. Also, profiles of all flow characteristics were compared with and without particles and some effects of the particle on the flow were identified.

Publisher

Walter de Gruyter GmbH

Subject

Applied Mathematics,General Physics and Astronomy,Mechanics of Materials,Engineering (miscellaneous),Modeling and Simulation,Computational Mechanics,Statistical and Nonlinear Physics

Reference51 articles.

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3. V. Vasistha, Effects of pollutants produced by thermal power plant on environment: A review, Int. J. Mech. Eng. Rob. Res. 3 (2) April (2014), 202–207.

4. W. K. Pokale, Effects of thermal power plant on environment, Sci. Res. Chem.Commun. 2 (3) (2012), 212–215.

5. S. Balachandar and J. K. Eaton, Turbulent dispersed multiphase flow, Annu. Rev. Fluid Mech. 42 (2010), 111–133.10.1146/annurev.fluid.010908.165243

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