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SLMB Modeling of the Full Spectrum Cumulative k-Distribution of H2O

[+] Author Affiliations
Frédéric André, Rodolphe Vaillon

Université de Lyon, Villeurbanne, France

Paper No. HT2009-88190, pp. 175-176; 2 pages
doi:10.1115/HT2009-88190
From:
  • ASME 2009 Heat Transfer Summer Conference collocated with the InterPACK09 and 3rd Energy Sustainability Conferences
  • Volume 1: Heat Transfer in Energy Systems; Thermophysical Properties; Heat Transfer Equipment; Heat Transfer in Electronic Equipment
  • San Francisco, California, USA, July 19–23, 2009
  • Conference Sponsors: Heat Transfer Division
  • ISBN: 978-0-7918-4356-7 | eISBN: 978-0-7918-3851-8
  • Copyright © 2009 by CNRS, INSA Lyon, UCBL

abstract

Radiative heat transfer is significant in many applications involving energy exchanges in gaseous media, such as combustion in engines or furnaces, atmospheric heat balances,.. The Line-By-Line (LBL) approach is the most reliable technique to determine the radiative properties of gases but is rarely used in radiative transfer simulations due to the associated prohibitive computational requirements. Approximate models are favored for such calculations. A comprehensive description of these existing methodologies can be found in Refs. [1, 2].

Copyright © 2009 by CNRS, INSA Lyon, UCBL

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