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Sibulkin, M., 1986. Heat Of Gasification For Pyrolysis Of Charring Materials. Fire Safety Science 1: 391-400. doi:10.3801/IAFSS.FSS.1-391
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Emori, I., Iguchi, Y., Saito, K. and Wichman, I.S., 1989. Simplified Scale Modeling Of Turbulent Flame Spread With Implication To Wildland Fires. Fire Safety Science 2: 263-273. doi:10.3801/IAFSS.FSS.2-263
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Barnett, C.R., 1989. Fire Separation Between External Walls Of Buildings. Fire Safety Science 2: 841-850. doi:10.3801/IAFSS.FSS.2-841
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Tsuchiya, Y. and Mathieu, J.F., 1991. Heat, Co And Smoke Release Rates Of Plywood Under A Depleted Oxygen Atmosphere: An Experimental Study Using An Osu Heat Release Rate Apparatus. Fire Safety Science 3: 605-614. doi:10.3801/IAFSS.FSS.3-605
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Williamson, R.B., Revenaugh, A. and Mowrer, F.W., 1991. Ignition Sources In Room Fire Tests And Some Implications For Flame Spread Evaluation. Fire Safety Science 3: 657-666. doi:10.3801/IAFSS.FSS.3-657
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Back, G., Beyler, C.L., Dinenno, P. and Tatem, P., 1994. Wall Incident Heat Flux Distributions Resulting From An Adjacent Fire. Fire Safety Science 4: 241-252. doi:10.3801/IAFSS.FSS.4-241
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Suzuki, T., Sucahyo, B., Kawamata, M. and Hirano, T., 1994. Polyurethane Foam Smoldering Supported By External Heating. Fire Safety Science 4: 397-408. doi:10.3801/IAFSS.FSS.4-397
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Delichatsios, M.M., Wu, P.K., Delichatsios, M.A., Lougheed, G.D., Crampton, G.P., Qian, C., Lshida, H. and Saito, K., 1994. Effect Of External Radiant Heat Flux On Upward Fire Spread: Measurements On Plywood And Numerical Predictions. Fire Safety Science 4: 421-432. doi:10.3801/IAFSS.FSS.4-421
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Gandhi, P.D., Caudill, L., Hoover, J. and Chapin, T., 1997. Determination Of Fire Exposure Heat Flux In Cable Fire Tests. Fire Safety Science 5: 141-152. doi:10.3801/IAFSS.FSS.5-141
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Qian, C. and Saito, K., 1997. An Empirical Model For Upward Flame Spread Over Vertical Flat And Corner Walls. Fire Safety Science 5: 285-296. doi:10.3801/IAFSS.FSS.5-285
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Pchelintsev, A., Hasemi, Y., Wakamatsu, Takashi and Yokobayashi, Y., 1997. Experimental And Numerical Study On The Behaviour Of A Steel Beam Under Ceiling Exposed To A Localized Fire. Fire Safety Science 5: 1153-1164. doi:10.3801/IAFSS.FSS.5-1153
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Kamikawa, D., Hasemi, Y., Wakamatsu, Takashi and Kagiya, K., 2003. Experimental Flame Heat Transfer Correlations For A Steel Column Adjacent To And Surrounded By A Pool Fire. Fire Safety Science 7: 989-1000. doi:10.3801/IAFSS.FSS.7-989
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Wakamatsu, Takashi, Hasemi, Y., Kagiya, K. and Kamikawa, D., 2003. Heating Mechanism Of Unprotect4ed Steel Beam Installed Beneath Ceiling And Exposed To A Localized Fire: Verification Using The Real-scale Experiment And Effects Of The Smoke Layer. Fire Safety Science 7: 1099-1110. doi:10.3801/IAFSS.FSS.7-1099
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Tofilo, P., Delichatsios, M.A. and Silcock, G.W.H., 2005. Effect Of Fuel Sootiness On The Heat Fluxes To The Walls In Enclosure Fires. Fire Safety Science 8: 987-998. doi:10.3801/IAFSS.FSS.8-987
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Urbas, J. and Parker, W.J., 2005. Surface Temperature Measurement In A Fire Environment Using An Infrared Pyrometer. Fire Safety Science 8: 1401-1412. doi:10.3801/IAFSS.FSS.8-1401
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Delichatsios, M.A., 2014. Enclosure and Facade Fires: Physics and Applications. Fire Safety Science 11: 3-27. 10.3801/IAFSS.FSS.11-3
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Wang, H.Y. and Sahraoui H., 2014. Mathematical Modelling of Pool Fire Burning Rates in a Full- Scale Ventilated Tunnel. Fire Safety Science 11: 361-375. 10.3801/IAFSS.FSS.11-361
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Usui K. and Matsuyama, K., 2014. An Experimental Study on Attenuation of Radiant Heat Flux from Flame through Water Droplets. Fire Safety Science 11: 1196-1207. 10.3801/IAFSS.FSS.11-1196
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