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Numerical Model to Quantify the Influence of the Cellulosic Substrate on the Ignition Propensity Tests Cover

Numerical Model to Quantify the Influence of the Cellulosic Substrate on the Ignition Propensity Tests

Open Access
|Sep 2016

References

  1. Barillo, D.J., P.A. Brigham, D.A. Kayden, R.T. Heck, and A.T. McManus: The Fire-Safe Cigarette: A Burn Prevention Tool; J. Burn. Care. Rehabil. 21 (2000) 164–170.
  2. International Organization of Standardization (ISO): International Standard 12863:2010. Standard Test Method for Assessing the Ignition Propensity of Cigarettes; ISO, Geneva, Switzerland, 2010.
  3. Gann, R.G. and W.F. Guthrie: Robustness of Measuring the Ignition Strength of Cigarettes with ASTM Method E2187-02b; NIST Technical Note 1454, National Institute of Standards and Technology, Washington, DC, USA, 2003.
  4. Su, J.Z., P. Leroux, and J.C. Latour: Cigarette Ignition Propensity Testing – First Series; Institute for Research in Construction, National Research Council, Canada 2003.
  5. Gann, R.G.: Measuring the Ignition Propensity of Cigarettes; in: Proceedings of the 11th Interflam Fire Science and Engineering Conference, London, UK, July 3–5, 2007, pp. 145–155.
  6. Mehta, S.: Cigarette Ignition Risk Project; U.S. Consumer Product Safety Commission, Bethesda, MD, USA, 2012.
  7. Eitzinger, B. and S. Pirker: Numerical Simulation of a Cigarette During Smoking; Beitr. Tabakforsch. Int. 21 (2005) 403–416. 10.2478/cttr-2013-0806
  8. Eitzinger, B.: A Simulation Study of Self-Extinguishing Cigarettes; Beitr. Tabakforsch. Int. 22 (2006) 79–87. 10.2478/cttr-2013-0819
  9. Saidi, M.S., M.R. Hajaligol, and F. Rasouli: An Experimental and Numerical Analysis of Puff Hydrodynamics; Beitr. Tabakforsch. Int. 21 (2004) 157–166. 10.2478/cttr-2013-0819
  10. Chen, P.: A Mathematical Model of Cigarette Smoldering Process; Beitr. Tabakforsch. Int. 20 (2002) 265–271. 10.2478/cttr-2013-0740
  11. Muramatsu, M.: An Approach to Modeling a Burning Cigarette; Beitr. Tabakforsch. Int 21 (2005) 286–293. 10.2478/cttr-2013-0795
  12. Zheng, Y., J. Chipley, A. Dow, and C. Midgett: A Model for the Prediction of Tobacco Temperature and Oxygen Profiles in Warehouse Aging Process; Beitr. Tabakforsch. Int. 22 (2007) 358–364. 10.2478/cttr-2013-0842
  13. Gaißer, H.: Fluiddynamik in der Cigarette und deren Einfluß auf den Zugwiderstand [Fluid Dynamics in the Cigarette and the Influence on Drawing Restistance]; Beitr. Tabakforsch. Int. 16 (1994) 11–46. 10.2478/cttr-2013-0630
  14. Gaißer, H.: Die stationäre Strömung in der Cigarette und deren Einfluß auf den Zugwiderstand [Steady State Flow in the Cigarette and its Influence on Pressure Drop]; Beitr. Tabakforsch. Int. 15 (1992) 93–122. 10.2478/cttr-2013-0626
  15. Mitler, H.E. and G.N. Walton: Modeling the Ignition of Soft Furnishings by a Cigarette; U.S. Department of Commerce, National Institute of Standards and Technology, Washington, DC, USA, 1993.
  16. Krasny, J.F., W.J. Parker, and V. Babrauskas (Editors): Fire Behavior of Upholstered Furniture and Mattresses; William Andrew Publishing, Norwich, NY, USA, 2001. 10.1016/B978-081551457-2.50001-2
  17. Yi, S.-C., E.-S. Song, and M.R. Hajaligol: Mathematical Model of Smoldering Combustion in a Carbonaceous Porous Medium. Part 1 – Development of Pyrolysis and Combustion Models for a Cylindrical Geometry; J. Fire Sci. 19 (2001) 429–448. 10.1177/073490401773732436
  18. Hirschler, M.M.: Mathematical Models to Analyse the Effect of Physical Properties of Cigarettes on the Propensity of the Cigarette to Ignite Cellulosic Fabrics; Fire Mater. 21(1997) 33–39. 10.1002/(SICI)1099-1018(199701)21:1<;33::AID-FAM594>3.0.CO;2-E
  19. International Organization of Standardization (ISO): International Standard 287:2009. Paper and Board – Determination of Moisture Content of a Lot – Oven-Drying Method; ISO, Geneva, Switzerland, 2009.
  20. International Organization of Standardization (ISO): International Standard 534:2011. Paper and Board – Determination of Thickness, Density and Specific Volume; ISO, Geneva, Switzerland, 2011.
  21. International Organization of Standardization (ISO): International Standard 536:2011. Paper and Board – Determination of Grammage; ISO, Geneva, Switzerland, 2011.
  22. International Organization of Standardization (ISO): International Standard ISO 5636-3:2013. Paper and Board – Determination of Air Permeance (Medium Range) – Part 3: Bendtsen Method; ISO, Geneva, Switzerland, 2013.
  23. International Organization of Standardization (ISO): International Standard ISO 8791-2:2013. Paper and Board – Determination of Roughness/Smoothness (Air Leak Methods) – Part 2: Bendtsen Method; ISO, Geneva, Switzerland, 2013.
  24. International Organization of Standardization (ISO): International Standard ISO 1716:2010. Reaction to Fire Tests for Products – Determination of the Gross Heat of Combustion (Calorific Value); ISO, Geneva, Switzerland, 2010.
  25. Deutsches Institut für Normung (DIN): German Standard DIN 53765:1994. Testing of Plastics and Elastomeres, Thermal Analysis, DSC-Method; DIN, Berlin, Germany, 2010.
  26. Zienkiewicz, O.C.: The Finite Element Method in Engineering Science; McGraw-Hill, London, UK, 1971.
  27. Wang, M., J. He, J. Yu, and N. Pan: Lattice Boltzmann Modeling of the Effective Thermal Conductivity for Fibrous Materials; Int. J. Therm. Sci. 46 (2007) 848–855. 10.1016/j.ijthermalsci.2006.11.006
  28. Tondini, F., P. Bosetti, and S. Bruschi: Heat Transfer in Hot Stamping of High-Strength Steel Sheets; Proc. Inst. Mech. Eng. B - J. Eng. Manuf. 225 (2011) 1813–1824. 10.1177/0954405411413987
  29. Kashiwagi, T. and H. Nambu: Global Kinetic Constants for Thermal Oxidative Degradation of a Cellulosic Paper; Combust. Flame 88 (1992) 345–368.
  30. Fredlund, B.: Modelling of Heat and Mass Transfer in Wood Structures During Fire; Fire Safety J. 20 (1993) 39–69. 10.1016/0379-7112(93)90011-E
  31. Kartovaara, I., R. Rajala, M. Luukkala, and K. Sipi: Conduction of Heat in Paper; in: Papermaking Raw Materials, edited by V. Punton, Mech. Eng. Pub. London, UK, 1985, pp. 381–412.
  32. Lyman, C.S., T.A. Perfetti, D.M. Riggs, and W.T. Morgan: Thermal Emissivity and Cigarette Coal Temperature During Smolder; Beitr. Tabakforsch. Int. 20 (2003) 381–388. 10.2478/cttr-2013-0755
  33. Baker, R.: Temperature Variation Within a Cigarette Combustion Coal During the Smoking Cycle; High Temp. Sci. 7 (1975) 236–247.
  34. Pino, A., J. Pladellorens, J.F. Colom, O. Cusola, and A. Tosas: Using Laser Speckle to Measure the Roughness of Paper; Tappi J. 10 (2011) 7–13.
  35. COMSOL, A.B.: COMSOL Multiphysics User’s Guide; COMSOL AB, Stockholm, Sweden, 2005.
  36. Yeoh, G.H. and K.K. Yuen: Computational Fluid Dynamics in Fire Engineering: Theory, Modelling and Practice; Butterworth-Heinemann, Burlington, MA, USA, 2009.
  37. International Organization of Standardization (ISO): International Standard 5660-1:1993. Fire Tests - Reaction to Fire - Part 1: Rate of Heat Release From Building Products (Cone Calorimeter method); ISO, Geneva, Switzerland, 1993.
  38. Statler Jr, D.L.: A Mechanistic and Modeling Study of Recycled and Virgin Flame Retarded Polycarbonate; Dissertation, West Virginia University, Morgantown, WV, USA, 2008.
  39. Baker, R.R. and R.A. Crellin: The Diffusion of Carbon Monoxide Out of Cigarettes; Beitr. Tabakforsch. 9 (1977) 131–140. 10.2478/cttr-2013-0437
  40. Johnsson, J.E. and A. Jensen; Effective Diffusion Coefficients in Coal Chars: Proc. Combust. Inst. 28 (2000) 2353–2359. 10.1016/S0082-0784(00)80647-5
  41. Hesford, M.: A 24 Factorial Experimental Design to Investigate the Influence of LIP Testing Substrate Parameters (Basis Weight, Permeability and Roughness) on LIP Pass Rates and Residual Length Measurements; Abstract ST 49 presented at the CORESTA Meeting Smoke Science/Product Technology Groups, Graz, Austria, 2011.
Language: English
Page range: 102 - 112
Submitted on: Feb 3, 2016
Accepted on: Jun 30, 2016
Published on: Sep 10, 2016
Published by: Institut für Tabakforschung GmbH
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2016 Pablo Guindos, Christian Michel, Cindy Weichert, published by Institut für Tabakforschung GmbH
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.