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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Effect of radiative transfer of heat released from combustion reaction on temperature distribution: A numerical study for a 2-D system
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Effect of radiative transfer of heat released from combustion reaction on temperature distribution: A numerical study for a 2-D system

机译:Effect of radiative transfer of heat released from combustion reaction on temperature distribution: A numerical study for a 2-D system

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摘要

Both light and heat are produced during a chemical reaction in a combustion process, but traditionally all the energy released is taken as to be transformed into the internal energy of the combustion medium. So the temperature of the medium increases, and then the thermal radiation emitted from it increases too. Chemiluminescence is generated during a chemical reaction and independent of the temperature, and has been used widely for combustion diagnostics. It was assumed in this paper that the total energy released in a combustion reaction is divided into two parts, one part is a self-absorbed heat, and the other is a directly emitted heat. The former is absorbed immediately by the products, becomes the internal energy and then increases the temperature of the products as treated in the traditional way. The latter is emitted directly as radiation into the combustion domain and should be included in the radiation transfer equation (RTE) as a part of radiation source. For a simple, 2-D, gray, emitting-absorbing, rectangular system, the numerical study showed that the temperatures in reaction zones depended on the fraction of the directly emitted energy, and the smaller the gas absorption coefficient was, the more strong the dependence appeared. Because the effect of the fraction of the directly emitted heat on the temperature distribution in the reacting zones for gas combustion is significant, it is required to conduct experimental measurements to determine the fraction of self-absorbed heat for different combustion processes. (C) 2005 Elsevier Ltd. All rights reserved.

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