Influence of the gray gases number in the weighted sum of gray gases model on the radiative heat exchange calculation inside pulverized coal-fired furnaces
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Published:2016
Issue:suppl. 1
Volume:20
Page:197-206
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ISSN:0354-9836
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Container-title:Thermal Science
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language:en
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Short-container-title:THERM SCI
Author:
Crnomarkovic Nenad1ORCID,
Belosevic Srdjan1,
Tomanovic Ivan1ORCID,
Milicevic Aleksandar1ORCID
Affiliation:
1. Vinca Institute of Nuclear Sciences, Belgrade
Abstract
The influence of the number of gray gases in the weighted sum in the gray
gases model on the calculation of the radiative heat transfer is discussed in
the paper. A computer code which solved the set of equations of the
mathematical model describing the reactive two-phase turbulent flow with
radiative heat exchange and with thermal equilibrium between phases inside
the pulverized coal-fired furnace was used. Gas-phase radiative properties
were determined by the simple gray gas model and two combinations of the
weighted sum of the gray gases models: one gray gas plus a clear gas and two
gray gases plus a clear gas. Investigation was carried out for two values of
the total extinction coefficient of the dispersed phase, for the clean
furnace walls and furnace walls covered by an ash layer deposit, and for
three levels of the approximation accuracy of the weighting coefficients. The
influence of the number of gray gases was analyzed through the relative
differences of the wall fluxes, wall temperatures, medium temperatures, and
heat transfer rate through all furnace walls. The investigation showed that
there were conditions of the numerical investigations for which the relative
differences of the variables describing the radiative heat exchange decrease
with the increase in the number of gray gases. The results of this
investigation show that if the weighted sum of the gray gases model is used,
the complexity of the computer code and calculation time can be reduced by
optimizing the number of gray gases.
Funder
Ministry of Education, Science and Technological Development of the Republic of Serbia
Publisher
National Library of Serbia
Subject
Renewable Energy, Sustainability and the Environment
Cited by
1 articles.
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