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<ArticleSet>
<Article>
<Journal>
				<PublisherName>Isfahan University of Technology</PublisherName>
				<JournalTitle>Journal of Computational Methods in Engineering</JournalTitle>
				<Issn>2228-7698</Issn>
				<Volume>24</Volume>
				<Issue>1</Issue>
				<PubDate PubStatus="epublish">
					<Year>2022</Year>
					<Month>12</Month>
					<Day>31</Day>
				</PubDate>
			</Journal>
<ArticleTitle>Temperature Distribution of a Non gray Gas between Two Parallel Planes Using Exponential Wide Band Model</ArticleTitle>
<VernacularTitle>Temperature Distribution of a Non gray Gas between Two Parallel Planes Using Exponential Wide Band Model</VernacularTitle>
			<FirstPage>299</FirstPage>
			<LastPage>314</LastPage>
			<ELocationID EIdType="pii">2901</ELocationID>
			
			
			<Language>FA</Language>
<AuthorList>
<Author>
					<FirstName></FirstName>
					<LastName>R. Hosseini</LastName>
<Affiliation></Affiliation>

</Author>
<Author>
					<FirstName></FirstName>
					<LastName>M. Vaziri</LastName>
<Affiliation></Affiliation>

</Author>
<Author>
					<FirstName></FirstName>
					<LastName>And M. Bidi</LastName>
<Affiliation></Affiliation>

</Author>
</AuthorList>
				<PublicationType>Journal Article</PublicationType>
			<History>
				<PubDate PubStatus="received">
					<Year>2022</Year>
					<Month>12</Month>
					<Day>31</Day>
				</PubDate>
			</History>
		<Abstract>In this paper, the Radiation Transfer Equation(RTE) for a non-gray gas between two large parallel planes has been
solved and the temperature distribution obtained. With the RTE, solution heat fluxes are also determined. Since and   are two components of most combustion products, the problem has been solved for these two gases. The results were, whenever possible, compared with data reported elsewhere. Since the simulation of exact absorbing bands has been used, it can be claimed to be relatively close to exact solution. From the results otained, it can be maintained that treating, the above mentioned gases as a gray gas could cause considerable errors in the determination of temperature distribution and heat fluxes. The error would be more for water vapour than for carbon dioxide.</Abstract>
			<OtherAbstract Language="FA">In this paper, the Radiation Transfer Equation(RTE) for a non-gray gas between two large parallel planes has been
solved and the temperature distribution obtained. With the RTE, solution heat fluxes are also determined. Since and   are two components of most combustion products, the problem has been solved for these two gases. The results were, whenever possible, compared with data reported elsewhere. Since the simulation of exact absorbing bands has been used, it can be claimed to be relatively close to exact solution. From the results otained, it can be maintained that treating, the above mentioned gases as a gray gas could cause considerable errors in the determination of temperature distribution and heat fluxes. The error would be more for water vapour than for carbon dioxide.</OtherAbstract>
		<ObjectList>
			<Object Type="keyword">
			<Param Name="value">Gas radiation</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">Non-gray gas</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">Carbon dioxide</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">RTE</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">temperature distribution</Param>
			</Object>
			<Object Type="keyword">
			<Param Name="value">Gas absorbtivity and emissivity</Param>
			</Object>
		</ObjectList>
<ArchiveCopySource DocType="pdf">https://jcme.iut.ac.ir/article_2901_a57e8915461b83adefb011530b711704.pdf</ArchiveCopySource>
</Article>
</ArticleSet>
