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Application of full-spectrum k-distribution method to combined non-gray radiation and forced convection flow in a duct with an expansion
by
Lari, Khosro
, Atashafrooz, Meysam
, Nassab, Seyyed Abdolreza Gandjalikhan
in
Absorption coefficient
/ Carbon dioxide
/ Control
/ Ducts
/ Dynamical Systems
/ Engineering
/ Forced convection
/ Industrial and Production Engineering
/ K-distribution
/ Laminar
/ Mathematical models
/ Mechanical Engineering
/ Vibration
/ 기계공학
2015
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Application of full-spectrum k-distribution method to combined non-gray radiation and forced convection flow in a duct with an expansion
by
Lari, Khosro
, Atashafrooz, Meysam
, Nassab, Seyyed Abdolreza Gandjalikhan
in
Absorption coefficient
/ Carbon dioxide
/ Control
/ Ducts
/ Dynamical Systems
/ Engineering
/ Forced convection
/ Industrial and Production Engineering
/ K-distribution
/ Laminar
/ Mathematical models
/ Mechanical Engineering
/ Vibration
/ 기계공학
2015
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Application of full-spectrum k-distribution method to combined non-gray radiation and forced convection flow in a duct with an expansion
by
Lari, Khosro
, Atashafrooz, Meysam
, Nassab, Seyyed Abdolreza Gandjalikhan
in
Absorption coefficient
/ Carbon dioxide
/ Control
/ Ducts
/ Dynamical Systems
/ Engineering
/ Forced convection
/ Industrial and Production Engineering
/ K-distribution
/ Laminar
/ Mathematical models
/ Mechanical Engineering
/ Vibration
/ 기계공학
2015
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Application of full-spectrum k-distribution method to combined non-gray radiation and forced convection flow in a duct with an expansion
Journal Article
Application of full-spectrum k-distribution method to combined non-gray radiation and forced convection flow in a duct with an expansion
2015
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Overview
This paper presents a numerical analysis of interaction between non-gray radiation and laminar forced convection flow in a duct with an expansion. Distributions of absorption coefficients across the spectrum (50
cm
−1
<
η
< 20000
cm
−1
) are obtained from the HITRAN2008 database. The full spectrum k-distribution method (FSK) is used to deal with the non-gray part of the problem, while the gray radiation calculations are carried out using the Planck mean absorption coefficient. In addition, the results of non-gray medium are compared with the gray results in order to judge if the differences between these two approaches are significant enough to justify the usage of non-gray models. Results show that for air mixtures with different mole fractions of CO
2
and H
2
O, use of gray model for the radiative properties may leads to considerable errors and should be eschewed.
Publisher
Korean Society of Mechanical Engineers,Springer Nature B.V,대한기계학회
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