Effects of Variations in Thermal Properties on the Performance of Flame Resistant Fabrics for Flash Fires
Author(s) -
David A. Torvi,
J. Douglas Dale
Publication year - 1998
Publication title -
textile research journal
Language(s) - French
Resource type - Journals
SCImago Journal Rank - 0.43
H-Index - 84
eISSN - 1746-7748
pISSN - 0040-5175
DOI - 10.1177/004051759806801102
Subject(s) - materials science , thermal conductivity , emissivity , heat transfer , heat flux , thermal , thermal transmittance , heat transfer coefficient , composite material , flash (photography) , parametric statistics , thermal resistance , convective heat transfer , mechanics , thermodynamics , optics , physics , statistics , mathematics
A numerical model of heat transfer in thermal protective fabrics under high heat flux conditions is used to determine the effects of varying individual thermal properties and boundary conditions on the predicted performance of single layer fabrics during bench top tests simulating flash fire conditions. The fabric thermal properties with the largest effects are thermal conductivity and specific heat the boundary conditions. i. e., flame temperature and emissivity and convective heat transfer coefficient, have an even larger effect on predicted bench top test results. The results of the parametric studies are described in this paper, along with a discussion about how these results may be used to design thermal protective fabrics.Un mod\ue8le num\ue9rique de transfert de chaleur dans les tissus de protection thermique en conditions de flux de chaleur \ue9lev\ue9 est utilis\ue9 pour d\ue9terminer les incidences qu?a la variation des propri\ue9t\ue9s thermiques individuelles et des conditions aux limites sur la performance pr\ue9dite des tissus monocouche au cours d?essais au banc simulant des conditions d?embrasement \ue9clair. Les propri\ue9t\ue9s thermiques des tissus ayant les incidences les plus marqu\ue9es sont la conductibilit\ue9 thermique et la chaleur massique. Les conditions limites, soit la temp\ue9rature et le pouvoir \ue9missif de la flamme, ainsi que le coefficient de transfert de chaleur par convection, ont une incidence encore plus grande sur les r\ue9sultats pr\ue9dits des essais au banc. Les r\ue9sultats des \ue9tudes param\ue9triques sont d\ue9crits dans le pr\ue9sent document, et on y trouve \ue9galement un expos\ue9 de la fa\ue7on dont on peut utiliser ces r\ue9sultats pour concevoir des tissus de protection thermique.Peer reviewed: YesNRC publication: Ye
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