Have a personal or library account? Click to login
Analysis of a Fire in an Apartment of Timber Building Depending on the Ventilation Parameter Cover

Analysis of a Fire in an Apartment of Timber Building Depending on the Ventilation Parameter

Open Access
|Dec 2021

References

  1. [1] OSVALDOVA-MAKOVICKA, L. - GAŠPERCOVÁ, S.: The evaluation of flammability properties regarding testing methods. Civil and Environmental Engineering, Vol.11, Iss. 2, 2015, pp. 142–146.10.1515/cee-2015-0018
  2. [2] YAN, Z. - HOLMSTEDT, G.: Investigation of the dance hall fire in Göthenburg. October 1998 - A comparison between human observations and CFD simulation. Conference Proceedings of the 9th Interflam, Interscience Communications Ltd, UK, 2001.
  3. [3] MCGRATTAN, K. B. - BOULDIN, C.: Simulating the Fires in the World Trade Center. Conference Proceedings of the 10th Interflam, Vol. 2, pp. 999–1008, Interscience Communications Ltd, UK, 2004.
  4. [4] MOWRER, F. W.: The Right Tool for the Job. Fire Protection Engineering Magazine (SFPE), 13, 2002, pp. 39–45.
  5. [5] LAWSON, J. R. - QUINTIERE, J. G.: Slide-Rule Estimates of Fire Growth. National Bureau of Standards Report NBSIR 85-3196, 1985.10.6028/NBS.IR.85-3196
  6. [6] ALVARES, N. - FERNANDEZ-PELLO, A. C.: Fire Initiation and Spread in Overloaded Communication System Cable Trays. Experimental Thermal and Fluid Science, 21, 2000, pp. 51–57.10.1016/S0894-1777(99)00053-9
  7. [7] OLENICK, S. M. - CARPENTER D. J.: An Updated International Survey of Computer Models for Fire and Smoke. Journal of Fire Protection Engineering (SFPE), Vol. 13 (2), 2003, pp. 87–110.10.1177/1042391503013002001
  8. [8] MITLER, H. E. - ROCKETT, J. A.: Users Guide to FIRST, a Comprehensive Single-Room Fire Model. National Bureau of Standards Report NBSIR 87–3595, 198710.6028/NBS.IR.87-3595
  9. [9] PEACOCK, R. D. - RENEKE, P. A. - JONES, W. W.- BUKOWSKI, R. W. - FORNEY, G.: A User’s Guide for FAST: Engineering Tools for Estimating Fire Growth and Smoke Transport. National Institute of Standards and Technology,Special Publication 921, 2000.10.6028/NIST.SP.921e2000
  10. [10] JANCÍK, J. - MAGDOLENOVÁ, P. - MARKERT, F.: Comparison of Cone Calorimetry and FDS Model of Low Density Fireboard Pyrolisys. In: Wood & Fire Safety Proceedings of the 9th International Conference on Wood & Fire Safety 2020, pp. 144–151.10.1007/978-3-030-41235-7_22
  11. [11] COX, G. - KUMAR, S.: Field Modelling of Fire in Forced Ventilated Enclosures. Combustion Science and Technology, 52, 1987, pp. 7–24.10.1080/00102208708952565
  12. [12] RUBINI, P. A.: SOFIE: Simulation of Fires in Enclosures. Proceedings of the 5th International Symposium on Fire Safety Science, 1997, Melbourne, Australia.
  13. [13] MCGRATTAN, K. B. - BAUM, H. R. - REHM, R. G. - HAMINS, A. - FORNEY, G. P. - FLOYD, J. E. - HOSTIKKA, S. - PRASAD, K.: Fire Dynamics Simulator (Version 3) – User’s Guide. National Institute of Standards and Technology Report NISTIR 6783, 2002.10.6028/NIST.IR.6784e2002
  14. [14] TABACZENSKI, R. - CORRÉA, C. - ANCELMO PIRES, T. - RÉGO SILVA, J.: Numerical simulation and fire experiment in residential dormitory. Revista ALCONPAT, 9, 2019, pp. 15 – 29.10.21041/ra.v9i1.315
  15. [15] LI, S. - JIAOLEI, Z. - ZHAO, D. - DENG, L.: Study on fire resistance of a prefabricated reinforced concrete frame structure. Journal of Structural Fire Engineering, Vol. ahead-of-print, No. ahead-of-print, https://doi.org/10.1108/JSFE-12-2020-0039.10.1108/JSFE-12-2020-0039
  16. [16] FLOYD, J. E.: Comparison of CFAST and FDS for Fire Simulation with the HDR T51 and T52 Tests. National Institute of Standards and Technology NISTIR 6866, 2002.10.6028/NIST.IR.6866
  17. [17] LUO, M. - HE, Y. - BECK, V.: Application of Field Model and Two-zone Model to Flashover Fires in a Full-scale Multi-room Single Level Building. Fire Safety Journal, Vol. 29, 1997, pp. 1–74.10.1016/S0379-7112(97)00015-5
  18. [18] DEMBSEY, N. A. - PAGNI, P. J. - WILLIAMSON, R. B.: Compartment Fire Experiments: Comparison with Models. Fire Safety Journal, Vol. 25 (3), 1995, pp. 187–227.10.1016/0379-7112(96)00002-1
  19. [19] MCGRATTAN, K. – HOSTIKKA, S. – MCDERMOTT, R. – CRAIG, J. E.: Weinschenk Kristopher Overholt Fire Dynamics Simulator Technical Reference Guide Volume 3: Validation. NIST Special Publication 2017, Sixth Edition.
  20. [20] KUDELAS, D.: Basics of computer flow modeling and visualizations. Fakulta BERG TU v Košiciach, 2017 (in Slovak).
  21. [21] OSVALDOVA-MAKOVICKA, L. - OSVALD, A.: Flame retardation of wood. 4th International Conference on Manufacturing Science and Engineering (ICMSE 2013) Location, Dalian, PEOPLES R CHINA Date, MAR 30-31, 2013 Book Series, Advanced Materials Research, Vol. 690–693, 2013, pp. 1331–1334.10.4028/www.scientific.net/AMR.690-693.1331
  22. [22] GAŠPERCOVÁ, S. - MAKOVICKÁ-OSVALDOVÁ, L. - KADLICOVÁ, P.: Additional thermal insulation materials and their reaction on fire. Fire protection, safety and security 2017, international scientific conference, May 3rd - 5th, 2017, Zvolen, Slovak Republic, conference proceedings, Zvolen, Technical University, 2017, pp. 51–56.
  23. [23] VANDLIČKOVA, M. - MARKOVÁ, I.: Ignition of Wood Dust of African Padau. Wood & Fire Safety Proceedings of the 9th International Conference on Wood & Fire Safety 2020, pp. 58–65.10.1007/978-3-030-41235-7_9
  24. [24] IRINGOVÁ, A. - IDUNK, R.: Solution of fire protection in historic buildings. Civil and Environmental Engineering, Vol. 12, Iss. 2, 2016, pp. 84–93.10.1515/cee-2016-0012
DOI: https://doi.org/10.2478/cee-2021-0056 | Journal eISSN: 2199-6512 | Journal ISSN: 1336-5835
Language: English
Page range: 549 - 558
Published on: Dec 9, 2021
Published by: University of Žilina
In partnership with: Paradigm Publishing Services
Publication frequency: 2 times per year

© 2021 Agnes Iringová, Dominika Vandličková, published by University of Žilina
This work is licensed under the Creative Commons Attribution 4.0 License.