Araştırma Makalesi

Application of overfire air technology on an example of a steam boiler PK-39 of the Aksu TPP (Kazakhstan)

Cilt: 6 Sayı: 4 28 Ekim 2018
  • A. Askarova
  • S. Bolegenova
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EN

Application of overfire air technology on an example of a steam boiler PK-39 of the Aksu TPP (Kazakhstan)

Öz

When burning any fossil fuels, one of the most harmful combustion products are nitrogen oxides NOx, which damage both the environment and human health in particular. Reduction of NOx emissions from fuel combustion at TPPs plays an important role in reducing the total level of nitrogen oxides NOx emitted into the atmosphere. One way to reduce the concentration of nitrogen oxides NOx is the stepwise combustion of the pulverized coal mixture, in particular the «Overfire Air» technology. The essence of this method is that the main volume of air is fed into the pulverized burners, and the rest of the air is further along the height of the torch through special nozzles. Structurally, the method of stepwise combustion of fuel can be carried out in boilers with a two-tier arrangement of burners along the height of the combustion chamber. In this case, practically no significant reconstruction of the boiler is required, which is associated with additional costs. In the present work, computational experiments on the use of modern overfire air technology (OFA) in the combustion chamber of the PK-39 boiler of the Aksu TPP were carried out and the fields of the main characteristics of heat and mass transfer, as well as the influence of the mass flow of the oxidant through the OFA injectors on the combustion process were obtained.

Anahtar Kelimeler

Kaynakça

  1. [1] Askarova A., Bolegenova S., Bekmukhamet A., Maximov Yu.V., Beketayeva M., Ospanova Sh. Gabitova Z.K., “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.
  2. [2] Askarova A.S., Bekmukhamet A., Bolegenova S.A., Beketayeva M.T., Maximov Yu.V., Ospanova Sh.S., Gabitova Z.K., “Numerical modeling of turbulence characteristics of burning process of the solid fuel in BKZ-420-140-7c combustion chamber”, International Journal of Mechanics, Vol.8, 2014, pp. 112-122.
  3. [3] Askarova A.S., Bolegenova S.A., Maximov V.Y., Bekmukhamet A, Beketayeva M.T., Gabitova Z.K. et al. Computational method for investigation of solid fuel combustion in combustion chambers of a heat power plant, High temperature, Vol.53, No.5, 2015, pp.751-757.
  4. [4] Askarova A., Bolegenova S., Bekmukhamet A., Ospanova Sh., Gabitova Z., “Using 3D modeling technology for investigation of conventional combustion mode of BKZ-420-140-7c combustion chamber”, Journal of Engineering and Applied Sciences, Vol.9, No.1, 2014, pp. 24-28.
  5. [5] Askarova A.S., Bolegenova S.A., Bekmuhamet A., Maximov V.Yu., “Mathematical simulation of pulverized coal in combustion chamber”, Procedia Engineering, Vol.42, 2012, pp. 1259-1265.
  6. [6] Askarova A., Bekmukhamet A., Bolegenova S., Ospanova Sh., Bolegenova Symbat, Maximov V. Beketayeva M., Gabitova Z., Ergalieva A., “3D modeling of heat and mass transfer during combustion of solid fuel in BKZ-420-140-7c combustion chamber of Kazakhstan”, Journal of Applied Fluid Mechanics, Vol.9, No.2, 2016, pp. 699-709.
  7. [7] Askarova, A.S., Lavrichsheva, Ye.I., Leithner, R., Müller, H., Magda, A., “Combustion of low-rank coals in furnaces of Kazakhstan coal-firing power plants”. VDI Berichte, Vol.1988, 2007, pp. 497-502.
  8. [8] Askarova, A. S., Vockrodt S., Leithner. et al., “Firing technique measures for increased efficiency and minimization of toxic emissions in Kasakh coal firing” VDI, 19th German Conference on Flames, Germany, VDI Gesell Energietechn; Verein Deutsch Ingn., Combustion And Incineration, VDI Berichte, Vol.1492, 1999, P. 93.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yazarlar

A. Askarova Bu kişi benim
Türkiye

S. Bolegenova Bu kişi benim

Yayımlanma Tarihi

28 Ekim 2018

Gönderilme Tarihi

14 Mayıs 2018

Kabul Tarihi

20 Ekim 2018

Yayımlandığı Sayı

Yıl 2018 Cilt: 6 Sayı: 4

Kaynak Göster

APA
Askarova, A., & Bolegenova, S. (2018). Application of overfire air technology on an example of a steam boiler PK-39 of the Aksu TPP (Kazakhstan). Balkan Journal of Electrical and Computer Engineering, 6(4), 217-223. https://doi.org/10.17694/bajece.475543
AMA
1.Askarova A, Bolegenova S. Application of overfire air technology on an example of a steam boiler PK-39 of the Aksu TPP (Kazakhstan). Balkan Journal of Electrical and Computer Engineering. 2018;6(4):217-223. doi:10.17694/bajece.475543
Chicago
Askarova, A., ve S. Bolegenova. 2018. “Application of overfire air technology on an example of a steam boiler PK-39 of the Aksu TPP (Kazakhstan)”. Balkan Journal of Electrical and Computer Engineering 6 (4): 217-23. https://doi.org/10.17694/bajece.475543.
EndNote
Askarova A, Bolegenova S (01 Ekim 2018) Application of overfire air technology on an example of a steam boiler PK-39 of the Aksu TPP (Kazakhstan). Balkan Journal of Electrical and Computer Engineering 6 4 217–223.
IEEE
[1]A. Askarova ve S. Bolegenova, “Application of overfire air technology on an example of a steam boiler PK-39 of the Aksu TPP (Kazakhstan)”, Balkan Journal of Electrical and Computer Engineering, c. 6, sy 4, ss. 217–223, Eki. 2018, doi: 10.17694/bajece.475543.
ISNAD
Askarova, A. - Bolegenova, S. “Application of overfire air technology on an example of a steam boiler PK-39 of the Aksu TPP (Kazakhstan)”. Balkan Journal of Electrical and Computer Engineering 6/4 (01 Ekim 2018): 217-223. https://doi.org/10.17694/bajece.475543.
JAMA
1.Askarova A, Bolegenova S. Application of overfire air technology on an example of a steam boiler PK-39 of the Aksu TPP (Kazakhstan). Balkan Journal of Electrical and Computer Engineering. 2018;6:217–223.
MLA
Askarova, A., ve S. Bolegenova. “Application of overfire air technology on an example of a steam boiler PK-39 of the Aksu TPP (Kazakhstan)”. Balkan Journal of Electrical and Computer Engineering, c. 6, sy 4, Ekim 2018, ss. 217-23, doi:10.17694/bajece.475543.
Vancouver
1.A. Askarova, S. Bolegenova. Application of overfire air technology on an example of a steam boiler PK-39 of the Aksu TPP (Kazakhstan). Balkan Journal of Electrical and Computer Engineering. 01 Ekim 2018;6(4):217-23. doi:10.17694/bajece.475543

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