Open Access
Issue |
MATEC Web of Conferences
Volume 64, 2016
2016 2nd International Conference on Chemical Materials and Process (ICCMP 2016)
|
|
---|---|---|
Article Number | 07005 | |
Number of page(s) | 7 | |
Section | Civil Engineering | |
DOI | https://doi.org/10.1051/matecconf/20166407005 | |
Published online | 01 July 2016 |
- S. Nazare, B.K. Kandola, A.R. Horrocks, Smoke, CO and CO2 measurements and evaluation using different fire testing techniques for flame retardant unsaturated polyester resin formulations, J Fire Sci., 26, 215–242 (2008) [CrossRef] [Google Scholar]
- J.H. Sun, L.H. Hu, Y. Zhang, A review on research of fire dynamics in high-rise buildings, Theoretical and Applied Mechanics Letters., 3, 1–13 (2013) [Google Scholar]
- W.C. Fan, J.H. Sun, S.X. Lu, Fire risk assessment methodology, 1 st ed. Beijing, China: Science press, 2, (2004) [Google Scholar]
- G.E. Hartzell, Overview of combustion toxicology, Toxicology, 115, 7–23 (1996) [CrossRef] [Google Scholar]
- Y. Alarie, Toxicity of fire smoke, Crit Rev Toxicol, 32, 259–289 (2002) [CrossRef] [Google Scholar]
- J. J. Xing, Y. Jiang, L.W. Pan, An approach for predicting the toxicity of smoke, Journal of Safety Science and Technology, 8, 72–87 (2013) [Google Scholar]
- P. Blomqvist, T. Hertzberg, H. Tuovinen, K. Arrhenius, L. Rosell, Detailed determination of smoke gas contents using a small-scale controlled equivalence ratio tube furnace method, Fire Mater., 31, 495–521 (2007). [CrossRef] [Google Scholar]
- A. A. Stec, T. R. Hull, K. Lebek, J. A. Purser, D. A. Purser, The effect of temperature and ventilation condition on the toxic product yields from burning polymers, Fire Mater., 32, 49–60 (2008) [Google Scholar]
- J.L. Sebaugh, Guidelines for accurate EC50/IC50 estimation, Pharm Stat., 10, 128–134 (2011) [CrossRef] [Google Scholar]
- G.L. Neson, G.E. Hartzell, B.C. Levin, Group discussion: New research avenues in combustion toxicology, Toxicology, 115, 185–200 (1996) [CrossRef] [Google Scholar]
- B.C. Levin, New research avenues in toxicology: 7-gas N-gas model, toxicant suppressants, and genetic toxicology, Toxicology, 115, 89–106 (1996) [CrossRef] [Google Scholar]
- A.A. Stec, T.R. Hull, Assessment of the fire toxicity of building insulation materials, Energ Buildings., 43, 498–506 (2011) [CrossRef] [Google Scholar]
- K.T. Paul, T.R. Hull, K. Lebek, A.A. Stec, Fire smoke toxicity: The effect of nitrogen oxides, Fire Safety J., 43, 243–251 (2008) [CrossRef] [Google Scholar]
- K. McGrattan, S. Hostikka, R. McDermott, Fire Dynamics Simulator, Technical Reference Guide, (2014) [Google Scholar]
- J.D. Regele, E. Knudsen, H. Pitsch, G. Blanquart, A two-equation model for non-unity Lewis number differential diffusion in lean premixed laminar flames, Combust Flame., 160, 240–250 (2013) [CrossRef] [Google Scholar]
- G. Maragkos, P. Rauwoens, B. Merci, A new methodology to incorporate differential diffusion in CFD simulations of reactive flows, Combust Flame., 160, 1903–1905 (2013) [CrossRef] [Google Scholar]
- G. Maragkos, P. Rauwoens, B. Merci, Differential diffusion effects in numerical simulations of laminar, axi-symmetric H2/N2–air diffusion flames, Int J Hydrogen Energ., 39, 13285–13291 (2014) [CrossRef] [Google Scholar]
- L. Smith, R. Dibble, L. Talbot, R. Barlow, C. Carter, Laser Raman scattering measurements of differential molecular diffusion in turbulent nonpremixed jet flames of H2/CO2 fuel, Combust Flame., 100, 153–160 (1995) [CrossRef] [Google Scholar]
- N.R. Marshall, The behaviour of hot gases flowing within a staircase, Fire Safety J., 9, 245–255 (1985) [CrossRef] [Google Scholar]
- R.J. Kee, F.M. Rupley, J.A. Miller, CHEMKIN Release 4.0, Reaction Design, (2004) [Google Scholar]
- J.O. Hirschfelder, Ch. F. Curtiss, R.B. Bird, Molecular Theory of Gases and Liquids, New York: Wiley, (1954) [Google Scholar]
- M.W. Chasejr., NIST-JANAF Thermochemical Tables, (1998) [Google Scholar]
- A.J. Aspden, M.S. Day, J.B. Bell, Turbulence–flame interactions in lean premixed hydrogen: transition to the distributed burning regime, J. Fluid Mech., 680, 287–320, (2011) [CrossRef] [Google Scholar]
- Zhang Zhaoshun, Zui Guixiang, Xu Chunxiao, Theory and Modeling of Turbulence. Tsinghua University Press, Beijing, China, (2005) [Google Scholar]
- N.R. Marshall, Air entrainment into smoke and hot gases in open shafts, Fire Safety J., 10, 37–46 (1986) [CrossRef] [Google Scholar]
- J. Floyd, G. Forney, S. Hostikka, T. Korhonen, R. McDermott, K. McGrattan, Fire Dynamics Simulator, User’s Guide, (2012) [Google Scholar]
- B. Savard, G. Blanquart, An a priori model for the effective species Lewis numbers in premixed turbulent flames, Combust Flame., 161, 1547–1557 (2014) [CrossRef] [Google Scholar]
- Chen Jianguo, Chen Haixin, Fu Song, Two typical phenomena from the numerical simulation of fire and smoke transport in a gymnasium fire, Chinese Sci Bull., 51, 1521–1525 (2006) [Google Scholar]
- B.C. Levin, New approaches to toxicity: A seven-gas predictive model and toxicant suppressants, Drug Chem Toxicol., 20, 271–280 (1997) [CrossRef] [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.