Numerical modeling of complex radiative heat transfer

The application of numerical simulation of the fine structure of the absorption and emission in the complex problems of radiative heat transfer is consider when the structural characteristics of the environment and the boundary conditions are different strong inhomogeneities in temperature, chemical...

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Main Authors: N. I. Moskalenko, L. V. Rodionov, M. S. Khamidullina, I. A. Afanasyev
Format: Article
Language:English
Published: Kazan State Power Engineering University 2017-12-01
Series:Известия высших учебных заведений: Проблемы энергетики
Subjects:
Online Access:https://www.energyret.ru/jour/article/view/48
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spelling doaj-87d7d65bbecf4bc986ead5410d9c79592021-07-28T13:16:27ZengKazan State Power Engineering UniversityИзвестия высших учебных заведений: Проблемы энергетики1998-99032017-12-0101-2334310.30724/1998-9903-2015-0-1-2-33-4348Numerical modeling of complex radiative heat transferN. I. Moskalenko0L. V. Rodionov1M. S. Khamidullina2I. A. Afanasyev3Казанский государственный энергетический университетКазанский государственный энергетический университетКазанский государственный энергетический университетКазанский государственный энергетический университетThe application of numerical simulation of the fine structure of the absorption and emission in the complex problems of radiative heat transfer is consider when the structural characteristics of the environment and the boundary conditions are different strong inhomogeneities in temperature, chemical composition and distribution of the radiation sources. The very nature of radiative heat transfer and temperature variation trends over time are determined by the acute effects of selection of the spectra and their modeling require knowledge of spectral line parameters: intensity, half-width position of the centers, contours. Compared with the use of approximate methods of calculation functions of the spectral transmittance numerical simulation reveals the effects of enlightenment environment or enhancing its absorption as a function of the temperature field. The effect of the temperature shift of centers the spectral lines over to radiation heat transfer in high-temperature environments is noted. Focuses on the study of the function of the spectral transmission as the main characteristics that define the radiative heat transfer.https://www.energyret.ru/jour/article/view/48radiative heat exchangeequilibrium and nonequilibrium radiationthe fine structure of the spectraradiative coolingthe parameters of the spectral lines
collection DOAJ
language English
format Article
sources DOAJ
author N. I. Moskalenko
L. V. Rodionov
M. S. Khamidullina
I. A. Afanasyev
spellingShingle N. I. Moskalenko
L. V. Rodionov
M. S. Khamidullina
I. A. Afanasyev
Numerical modeling of complex radiative heat transfer
Известия высших учебных заведений: Проблемы энергетики
radiative heat exchange
equilibrium and nonequilibrium radiation
the fine structure of the spectra
radiative cooling
the parameters of the spectral lines
author_facet N. I. Moskalenko
L. V. Rodionov
M. S. Khamidullina
I. A. Afanasyev
author_sort N. I. Moskalenko
title Numerical modeling of complex radiative heat transfer
title_short Numerical modeling of complex radiative heat transfer
title_full Numerical modeling of complex radiative heat transfer
title_fullStr Numerical modeling of complex radiative heat transfer
title_full_unstemmed Numerical modeling of complex radiative heat transfer
title_sort numerical modeling of complex radiative heat transfer
publisher Kazan State Power Engineering University
series Известия высших учебных заведений: Проблемы энергетики
issn 1998-9903
publishDate 2017-12-01
description The application of numerical simulation of the fine structure of the absorption and emission in the complex problems of radiative heat transfer is consider when the structural characteristics of the environment and the boundary conditions are different strong inhomogeneities in temperature, chemical composition and distribution of the radiation sources. The very nature of radiative heat transfer and temperature variation trends over time are determined by the acute effects of selection of the spectra and their modeling require knowledge of spectral line parameters: intensity, half-width position of the centers, contours. Compared with the use of approximate methods of calculation functions of the spectral transmittance numerical simulation reveals the effects of enlightenment environment or enhancing its absorption as a function of the temperature field. The effect of the temperature shift of centers the spectral lines over to radiation heat transfer in high-temperature environments is noted. Focuses on the study of the function of the spectral transmission as the main characteristics that define the radiative heat transfer.
topic radiative heat exchange
equilibrium and nonequilibrium radiation
the fine structure of the spectra
radiative cooling
the parameters of the spectral lines
url https://www.energyret.ru/jour/article/view/48
work_keys_str_mv AT nimoskalenko numericalmodelingofcomplexradiativeheattransfer
AT lvrodionov numericalmodelingofcomplexradiativeheattransfer
AT mskhamidullina numericalmodelingofcomplexradiativeheattransfer
AT iaafanasyev numericalmodelingofcomplexradiativeheattransfer
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