3D Visualization of the Results of Using Modern Ofa Technology on the Example of Real Boiler

Author:

Аskarova А. S.1,Bolegenova S. А.1,Bolegenova S. A.1,Maximov V. Yu.1,Beketayeva М. Т.1

Affiliation:

1. Physics and Technology Faculty Al-Farabi Kazakh national university Almaty, Al-Farabi av., 71 REPUBLIC OF KAZAKHSTAN

Abstract

The leading place in the world for environmental protection is currently occupied by the protection of the air basin. And the main sources of atmospheric pollution are industrial enterprises, motor transport and thermal power plants. Thus, there is an obvious need to increase attention to the problems of the innovation sector, mainly in the areas of technical improvement of heat and power industry enterprises. Therefore, the study of the problems of reducing the amount of harmful emissions into the atmosphere, control and regulation of its quality, as well as the study of new various methods of innovative development of thermal power is an urgent task at present, requiring a serious scientific approach. In the proposed work, computer experiments were carried out in the field of innovative energy production technologies (the use of modern "sharp blast" OFA technology) at a specific thermal power facility of the enterprise of the Republic of Kazakhstan. During the experiment, various ways of supplying additional air through OFA nozzles were investigated: OFA=0% (basic version without additional air supply), OFA=10% and OFA=18%. For these three modes, a comparative analysis of the aerodynamics of the furnace part of the boiler was performed according to the obtained distributions of the temperature and concentration fields of nitrogen oxide NO over the entire volume of the combustion chamber. The results obtained were compared with experimental data obtained during experiments conducted directly at the CHP.

Publisher

World Scientific and Engineering Academy and Society (WSEAS)

Subject

General Physics and Astronomy

Reference20 articles.

1. Askarova A.S., Safarik P., Bolegenova S.A., etc., Combustion processes of pulverized coal in existing combustion chambers of real power boilers of TPP of the Republic of Kazakhstan, Mat. of the 23rd International Congress of Chemical and Process Engineering (CHISA 2018), 2018, pp.437-452.

2. Möltner L., Schallhart V. Numerical optimization of AdBlue®-injection into the mixing section of SCR-systems, WSEAS Transactions on Fluid Mechanics, Vol.10, 2015, pp.80-87.

3. Beketayeva M.T., Ospanova Sh., Gabitova Z., etc., Investigation of turbulence characteristics of burning process of the solid fuel in BKZ 420 combustion chamber, WSEAS Transactions on Heat and Mass Transfer, Vol.9, 2014, pp.39- 50.

4. Maximov V., Ergaliyeva A., Gabitova Z., etc., Three-dimensional modelling of heat and mass transfer during combustion of low-grade Karaganda coal, Mat. of the 19th Conference on Process Integration, Modelling and Optimisation for Energy Saving and Pollution Reduction (PRES 2016), 2016, pp. 0734.

5. Mele J., Oman J., Krope J., Scale-up of a Cold Flow Model of FICFB Biomass Gasification Process to an Industrial Pilot Plant – Hydrodynamics of Particles, WSEAS Transactions on Fluid Mechanics, Vol.5, 2010, pp.15-24.

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