J. Andersen, C. L. Rasmussen, T. Giselsson, and P. Glarborg, Global Combustion Mechanisms for Use in CFD Modeling under Oxy-Fuel Conditions, Energy & Fuels, vol.23, issue.3, pp.1379-1389, 2009.
DOI : 10.1021/ef8003619

L. Audoin, G. Kolb, J. L. Torero, and J. M. Most, Average centreline temperatures of a buoyant pool fire obtained by image processing of video recordings, Fire Safety Journal, vol.24, issue.2, pp.167-187, 1995.
DOI : 10.1016/0379-7112(95)00021-K

J. Bardina, J. H. Ferziger, and W. C. Reynolds, Improved subgrid-scale models for large-eddy simulation, 13th Fluid and PlasmaDynamics Conference, 1980.
DOI : 10.2514/6.1980-1357

G. Brillant, Simulations des grandes échelles thermiques et expériences dans le cadre d'effusion anisotherme, 2004.

V. Babrauskas, Ignition Handbook, chapter 4, pp.41-140, 2003.

V. Babrauskas and R. B. Williamson, Influence of oxygen depletion on the radiative properties of pmma flames, Proceedings of the Combustion Institute, pp.563-570, 1981.

C. L. Beyler, Major species production by diffusion flames in a two-layer compartment fire environment, Fire Safety Journal, vol.10, issue.1, pp.47-56, 1986.
DOI : 10.1016/0379-7112(86)90031-7

C. Beyler, SFPE Handbook of Fire Protection Engineering, chapter Flammability Limits of Premixed and Diffusion Flames. National Fire Protection Association, 2008.

V. I. Blinov and G. Khudiakov, Certain laws governing diffusive burning of liquids, Fire Research Abstract abd Review, vol.1, pp.41-44, 1959.

V. Blinov and G. N. Khudiakov, Certain laws governing diffusive burning of liquids, Fire Research Abstract and Review, vol.1, pp.41-44, 1959.

F. T. Bodurtha, Industrial explosion prevention and protection, 1980.

I. B. Bolliger, Full residential-scale backdraft, Fire Engineering Research Report, vol.95, issue.1, 1995.

P. Bryner, E. L. Johnsson, and W. M. Pitts, Carbon monoxide production in compartment fires: reduced-scale enclosure test facility, 1994.

M. J. Burgess and R. V. Wheeler, CCXXVIII.???The lower limit of inflammation of mixtures of the paraffin hydrocarbons with air, J. Chem. Soc., Trans., vol.99, issue.0, pp.2013-2030, 1911.
DOI : 10.1039/CT9119902013

D. S. Burgess, A. Strasser, and J. Grumer, Diffusive burning of liquids in open trays, Fire Research Abstracts and Review, vol.3, pp.177-192, 1961.

W. K. Chow and G. W. Zou, Numerical simulation of pressure changes in closed chamber fires, Building and Environment, vol.44, issue.6, pp.1261-1275, 2009.
DOI : 10.1016/j.buildenv.2008.09.016

C. F. Colebrook, TURBULENT FLOW IN PIPES, WITH PARTICULAR REFERENCE TO THE TRANSITION REGION BETWEEN THE SMOOTH AND ROUGH PIPE LAWS., Journal of the Institution of Civil Engineers, vol.11, issue.4, pp.133-156, 1939.
DOI : 10.1680/ijoti.1939.13150

B. M. Cetegen, Entrainment and flame geometry of fire plumes, 1982.

G. Cox and R. Chitty, A study of the deterministic properties of unbounded fire plumes, Combustion and Flame, vol.39, issue.2, pp.191-209, 1980.
DOI : 10.1016/0010-2180(80)90016-4

M. Curtat, Traité de physique du bâtiment, tome 3 : physique du feu pour l'ingénieur.CSTB, 2002.

G. and D. Soete, Aspects fondamentaux de la combustion en phase gazeuse, Editions Technip, 1976.

J. T. Dipiazza, Limits of flammability of pure hydrocarbon-air mixtures at reduced pressures and room temperature, Report NACA RM E51C28, National Advisory Committee for Aeronautics, 1951.

Q. Dong, Evaluation du risque d'inflammation des fumées riches dans un milieu confiné sousventilé à l'aide de la simulation numérique, 2013.

D. Drysdale, An introduction to fire dynamics, 1985.
DOI : 10.1002/9781119975465

URL : http://cds.cern.ch/record/1418850/files/9780470319031_TOC.pdf

C. M. Fleischmann, Backdraft phenomenon NIST-GCR-94-646, National Institute of Standards and Technology, 1994.

M. Fleischmann, P. J. Pagni, and R. B. Williamson, Effects Of Ventilation On The Compartment Enhanced Mass Loss Rate, Proceedings of the Fourth International Symposium on Fire Safety Science Fifth International Symposium of Fire Safety Science, pp.415-426, 1994.
DOI : 10.3801/IAFSS.FSS.5-415

C. M. Fleischmann and K. B. Mcgrattan, Numerical and experimental gravity currents related to backdrafts, Fire Safety Journal, vol.33, issue.1, pp.21-34, 1999.
DOI : 10.1016/S0379-7112(98)00046-0

H. Ingason, Two Dimensional Rack Storage Fires, Fourth International Symposium of Fire Safety Science, pp.1209-1220, 1980.
DOI : 10.3801/IAFSS.FSS.4-1209

J. Floyd, S. Hunt, F. Williams, and P. Tatem, Fire and Smoke Simulator (FSSIM) Version 1: Theory Manual, pp.6180-6184, 2004.

J. Floyd, Coupling a Network HVAC Model to a Computational Fluid Dynamics Model Using Large Eddy Simulation, Fire Safety Science, vol.10, pp.459-470, 2011.
DOI : 10.3801/IAFSS.FSS.10-459

N. Gascoin, Etude et mesure de paramètres pertinents dans un écoulement réactif, 2006.

R. Gaunt, MELCOR Computer Code Manuals: Reference Manuals Version 1.8, 2000.

T. George, GOTHIC Containment Analysis Package User's Manual. NAI 8907-02, 2006.

D. Gojkovoc, Initial backdraft experiments, 2001.

D. T. Gottuk, Generation of carbon monoxide in compartment fires, 1992.

D. T. Gottuk, M. J. Peatross, J. P. Farley, and F. W. Williams, The development and mitigation of backdraft: a real-scale shipboard study, Fire Safety Journal, vol.33, issue.4, p.261, 1999.
DOI : 10.1016/S0379-7112(99)00033-8

J. C. Guibet, Carburants et moteurs : Technologies, 1. Editions Technip, 1997.

B. Hagglung, K. Nireus, and P. Werling, Pressure rise due to fire growth in a closed room, FOA Scientific Report, 1996.

B. Hagglung, K. Nireus, and P. Werling, Pressure rise due to fire growth in a closed room, FOA Scientific Report, 1996.

G. Heskestad, Volume expansion pressures and global heat transfer in compartment fires, Proceedings of the 24th Symposium on Combustion, pp.1753-1760, 1992.
DOI : 10.1016/S0082-0784(06)80205-5

H. C. Hottel, Review: certain laws governing diffusive burning of liquids, de v.i. blinov et g.n. khudiakov, Fire Research Abstracts and Reviews, vol.1, pp.41-44, 1958.

F. Jiang, Design of the exhaust system in the confinement of the HTR-10Nucl, Eng. Des, vol.218, pp.209-214, 2002.

J. L. Jackson and R. S. Brokaw, Variation of spontaneous ignition delays with température and composition for propane-oxygen-nitrogen mixtures at atmospheric pressure, NACA RM E54B19, 1954.

S. Kondo, K. Takizawa, A. Takahashi, and K. Tokukashi, Predictability of le chatelier's formula as exemplified by flammability, 2nd Symposium International on Scale Modelling, pp.87-96, 1997.

S. Kondo, T. Kenji, T. Akifumi, and T. Kazuaki, Extended Le Chatelier's formula and nitrogen dilution effect on the flammability limits, Fire Safety Journal, vol.41, issue.5, pp.406-417, 2006.
DOI : 10.1016/j.firesaf.2006.03.002

J. Lassus, Risque d'inflammation de gaz imbrûlés au cours d'un incendie en milieu confinéventilé, 2009.

J. Lassus, L. Courty, J. P. Garo, E. Studer, P. Jourda et al., Ventilation effects in confined and mechanically ventilated fires, International Journal of Thermal Sciences, vol.75, pp.87-94, 2014.
DOI : 10.1016/j.ijthermalsci.2013.07.015

J. Lassus, L. Courty, J. P. Garo, E. Studer, P. Jourda et al., Estimation of species concentrations during a fire in a reduced-scale room, Journal of Fire Sciences, vol.183, issue.1, pp.30-50, 2016.
DOI : 10.1177/0734904115617485

L. Chatelier and O. Boudourd, On the flammability limits of gaseous mixtures, pp.483-488, 1898.

B. Lewis and G. Von-elbe, Theory of flame propagation, 2nd Symposium on Combustion, pp.183-188, 1965.

B. Martel, Guide d'analyse du risque chimique. Dunod, 1997.

K. B. Mc-grattan, NIST Special Publication 1019 Fire Dynamics Simulator User's Guide NIST, 2013.

K. B. Mc-grattan, NIST Special Publication 1018 Fire Dynamics Simulator Technical Reference Guide NIST, 2013.

J. H. Morehart, E. E. Zukoski, and T. Kubota, Chemical species produced in fires near the limit of flammability, Fire Safety Journal, vol.19, issue.2-3, pp.177-188, 1992.
DOI : 10.1016/0379-7112(92)90032-8

A. Nasr, Détermination par un code CFD de l'évolution de la puissance d'un feu en régime de sous-ventilation dans un milieu confiné et mécaniquement ventilé, 2011.

A. Nasr, Heat feedback to the fuel surface of a pool fire in an enclosure'. Fire Safety Journal, pp.56-63, 2013.

V. Novozhilov and H. Koseki, CFD PREDICTION OF POOL FIRE BURNING RATES AND FLAME FEEDBACK, Combustion Science and Technology, vol.26, issue.8, pp.1283-1307, 2004.
DOI : 10.1016/0010-2180(95)00103-4

W. M. Pitts, The global equivalence ratio concept and the formation mechanisms of carbon monoxide in enclosure fires,, Progress in Energy and Combustion Science, pp.197-237, 1995.
DOI : 10.1016/0360-1285(95)00004-2

J. L. Poiseuille, Le mouvement des liquides dans les tubes de petits diamètres, p.1844, 1844.

S. B. Pope, Turbulent Flows, 2000.
URL : https://hal.archives-ouvertes.fr/hal-00712179

H. Prétrel and J. M. Such, Pressure variations induces by large scale pool fires in forced ventilated enclosures, Proceedings of the 9th International Fire Science and Engineering Conference, pp.17-19, 2001.

H. Prétrel, S. Mélis, S. Minétian, and P. Querre, Experimental observations of pressure instabilities during a pool fire in a confined and ventilated enclosure, Proceedings of the 4th International Seminar on Fires and Explosions Hazard, 2003.

H. Prétrel, W. L. Saux, Y. Pizzo, and J. M. Such, Over-pressure and low-pressure peaks during compartment fire tests in forced-ventilated configuration, Proceedings of the Interflam, 2004.

H. Prétrel and J. M. , Effect of ventilation procedures on the behaviour of a fire compartment scenario, Nuclear Engineering and Design, vol.235, issue.20, pp.2155-2169, 2005.
DOI : 10.1016/j.nucengdes.2005.03.003

H. Prétrel and W. L. Saux, Experimental study of the burning rate behaviour of a pool fire in confined and ventilated compartment, 2005.

H. Prétrel, P. Querre, and M. Forestier, Experimental Study Of Burning Rate Behaviour In Confined And Ventilated Fire Compartments, Proceedings of the 8th International Symposium on Fire Safety, 2005.
DOI : 10.3801/IAFSS.FSS.8-1217

H. Prétrel and J. M. Such, Study based on large scale experiments on periodic instabilities of pressure and burning rate during pool fire in confined and mechanically ventilated compartment, Proceedings of the 3rd European Combustion Meeting, pp.11-13, 2007.

B. Sapa, Contribution à l'extension d'un schema incompressible pour les flames à bas nombre de Froude -Pré-requis à la modélisation de l'incendie'

J. G. Quintiere, Fundamentals of Enclosure Fire "Zone" Models, Journal of Fire Protection Engineering, vol.1, issue.3, pp.99-119, 1989.
DOI : 10.1177/104239158900100302

R. G. Rehm and H. R. Baum, The equations of motion for thermally driven, buoyant flows, Journal of Research of the National Bureau of Standards, vol.83, issue.3, pp.297-308, 1978.
DOI : 10.6028/jres.083.019

R. G. Rehm and H. R. Baum, The equations of motion for thermally driven, buoyant flows, Journal of Research of the National Bureau of Standards, vol.83, issue.3, 1978.
DOI : 10.6028/jres.083.019

R. G. Rehm and G. P. Forney, A note on the pressure equations used in zone fire modelling, 1992.

R. G. Rehm and G. P. Forney, The pressure equation in zone-fire modeling Fire Sci, Technol, vol.14, pp.61-73, 1994.

O. Reynolds, An Experimental Investigation of the Circumstances Which Determine Whether the Motion of Water Shall Be Direct or Sinuous, and of the Law of Resistance in Parallel Channels, Philosophical Transactions of the Royal Society of London, vol.174, issue.0, pp.935-982, 1883.
DOI : 10.1098/rstl.1883.0029

O. Reynolds, The Two Manners of Motion of Water, Scientific American, vol.18, issue.449supp, pp.354-363, 1884.
DOI : 10.1038/scientificamerican08091884-7165bsupp

O. Reynolds, Study of fluid motion by means of coloured bands, Proceedings of the Royal Institution of Great Britain, pp.129-138, 1893.

J. Richard, Interaction d'un brouillard d'eau avec un feu de nappe à l'échelle laboratoire. Effets physicochimiques et influence sur le rayonnement, 2001.

D. Stroup and A. Lindeman, Verification and Validation of Selected Fire Models for Nuclear Power Plant Applications. NUREG-1824, supplement 1, United States Nuclear Regulatory Commission, 2013.

H. Takeda and K. Akita, Critical phenomenon in compartment fires with liquid fuels, Proceedings of the Combustion Institute, pp.519-527, 1981.
DOI : 10.1016/S0082-0784(81)80057-4

T. Beji, F. Bonte, and B. Merci, Numerical Simulations of a Mechanically-Ventilated Multi- Compartment Fire, Fire Safety Science, vol.11, pp.499-509, 2013.
DOI : 10.3801/IAFSS.FSS.11-499

S. J. Toner, E. E. Zukoski, and T. Kubota, Entrainment, chemistry and structure of fire plumes, 1987.

Y. Utiskul, J. G. Quintiere, A. S. Rangwala, B. A. Ringwelski, K. Wakatsuki et al., Compartment fire phenomena under limited ventilation, Fire Safety Journal, vol.40, issue.4, pp.367-390, 2005.
DOI : 10.1016/j.firesaf.2005.02.002

J. Wahlqvist and P. Van-hees, Validation of FDS for large-scale well-confined mechanically ventilated fire scenarios with emphasis on predicting ventilation system behavior, Fire Safety Journal, vol.62, pp.102-114, 2013.
DOI : 10.1016/j.firesaf.2013.07.007

W. G. Weg, W. C. Fan, L. Z. Yang, H. Song, Z. Deng et al., Experimental study of back-draft in a compartment with openings of different geometries, Combustion and Flame, vol.132, pp.709-714, 2003.

W. G. Weg and W. C. Fan, Critical condition off backdraft in compartment fires: a reduced-scale experimental study, Journal Loss Prevention in the process industries, pp.19-26, 2003.

W. G. Weg and W. C. Fan, Nonlinear analysis of the backdraft phenomenon in room fires, Fire Safety Journal, vol.39, pp.447-464, 2004.

C. K. Westbrook and F. L. Dryer, Simplified Reaction Mechanisms for the Oxidation of Hydrocarbon Fuels in Flames, Combustion Science and Technology, vol.12, issue.1-2, pp.31-43, 1981.
DOI : 10.1080/00102208108946970

C. J. Wieczorek, Carbon monoxide generation and transport from compartment fires, 2003.

F. W. Williams, J. P. Farley, M. J. Peatross, and D. T. Gottuk, class B firefighting doctrine and tactics: final report, pp.6180-97, 1997.

M. G. Zabetakis, Flammability characteristics of combustible gases and vapours: bulletin 627, 1965.

E. E. Zukovski, Fluid dynamic aspects of room fires, Fire Safety Science, vol.1, pp.111-118, 1986.