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TVT, 2015, Volume 53, Issue 5, Pages 792–798 (Mi tvt211)  

This article is cited in 7 scientific papers (total in 7 papers)

High Temperature Apparatuses and Structures

Computational method for investigation of solid fuel combustion in combustion chambers of a heat power plant

A. S. Askarova, S. A. Bolegenova, V. Yu. Maksimov, A. Bekmukhamet, M. T. Beketaeva, Z. Kh. Gabitova

Al-Farabi Kazakh National University

Abstract: Solid fuel combustion in an actual combustion chamber using coal with an ash content of more than $40%$ for minimization of the deleterious effects (environmental pollution) of heat power plants on environment. The FLOREAN application package was used for simulation and determination of various parameters of combustion.

DOI: https://doi.org/10.7868/S004036441504002X

Full text: PDF file (2109 kB)
References: PDF file   HTML file

English version:
High Temperature, 2015, 53:5, 752–758

Bibliographic databases:

UDC: 536.46:532.517.4
Received: 26.03.2014
Accepted:05.11.2014

Citation: A. S. Askarova, S. A. Bolegenova, V. Yu. Maksimov, A. Bekmukhamet, M. T. Beketaeva, Z. Kh. Gabitova, “Computational method for investigation of solid fuel combustion in combustion chambers of a heat power plant”, TVT, 53:5 (2015), 792–798; High Temperature, 53:5 (2015), 752–758

Citation in format AMSBIB
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    Citing articles on Google Scholar: Russian citations, English citations
    Related articles on Google Scholar: Russian articles, English articles

    This publication is cited in the following articles:
    1. A. S. Askarova, V. E. Messerle, A. B. Ustimenko, S. A. Bolegenova, S. A. Bolegenova, V. Yu. Maximov, A. B. Yergalieva, “Reduction of noxious substance emissions at the pulverized fuel combustion in the combustor of the BKZ-160 boiler of the Almaty heat electropower station using the “Overfire Air” technology”, Thermophys. Aeromechanics, 23:1 (2016), 125–134  crossref  isi
    2. A. Messerle, V. E. Messerle, A. B. Ustimenko, “Plasma thermochemical preparation for combustion of pulverized coal”, High Temperature, 55:3 (2017), 352–360  mathnet  crossref  crossref  isi  elib
    3. A. Askarova, S. Bolegenova, S. Bolegenova, V. Maximov, M. Beketayeva, I. Berezovskaya, Zh. Shortanbayeva, Z. Gabitova, A. Nugmanova, A. Yergaliyeva, “Experimental study of complex combustion processes in higher education”, 2nd International Conference on Education, Management and Systems Engineering (EMSE 2017), Destech Transactions on Social Science Education and Human Science, Destech Publications, Inc, 2017, 377–381  isi
    4. P. Khavanov, A. Chulenyov, “Boiler water regime”, Energy Management of Municipal Transportation Facilities and Transport (EMMFT 2017), IOP Conf. Ser. Earth Envir. Sci., IOP Conference Series-Earth and Environmental Science, 90, IOP Publishing Ltd, 2017, UNSP 012199  crossref  isi  scopus
    5. D. B. Vafin, A. V. Sadikov, M. A. Butyakov, “Calculation of a three-dimensional temperature field with allowance for the radiation heat exchange in chambers of tubular ovens with acoustic burners”, High Temperature, 56:4 (2018), 553–558  mathnet  crossref  crossref  isi  elib  elib
    6. A. S. Askarova, S. A. Bolegenova, P. Safarik, S. A. Bolegenova, V. Yu. Maximov, M. T. Beketayeva, A. O. Nugymanova, “Modern computing experiments on pulverized coal combustion processes in boiler furnaces”, News Natl. Acad. Sci. Rep. Kazakhstan-Ser. Phys.-Math., 6:322 (2018), 5–14  crossref  isi
    7. A. S. Askarova, S. A. Bolegenova, Symbat A. Bolegenova, V. Yu. Maksimov, M. T. Beketayeva, “Modeling of heat mass transfer in high-temperature reacting flows with combustion”, High Temperature, 56:5 (2018), 738–743  mathnet  crossref  crossref  isi  elib
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