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Sato, K. and Sega, S., 1989. Smolder Spread In A Horizontal Layer Of Cellulosic Powder. Fire Safety Science 2: 87-96. doi:10.3801/IAFSS.FSS.2-87
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Hasemi, Y. and Nishihata, M., 1989. Fuel Shape Effect On The Deterministic Properites Of Turbulent Diffusion Flames. Fire Safety Science 2: 275-284. doi:10.3801/IAFSS.FSS.2-275
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Backovsky, J., Foote, K.L. and Alvares, N.J., 1989. Temperature Profiles In Forced-Ventilation Enclosure Fires. Fire Safety Science 2: 315-324. doi:10.3801/IAFSS.FSS.2-315
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Keski-Rahkonen, O., 1989. Temperature Calculation Of Bare And Insulated Steel Structures Exposed To Standard Iso 834 Fire Test. Fire Safety Science 2: 697-705. doi:10.3801/IAFSS.FSS.2-697
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Harada, K. and Terai, T., 1989. Numerical Simulation Of A Fire Resistance Test Of A Concrete Slab. Fire Safety Science 2: 707-717. doi:10.3801/IAFSS.FSS.2-707
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Beyler, C.L., 1991. Analysis Of Compartment Fires With Overhead Forced Ventilation. Fire Safety Science 3: 291-300. doi:10.3801/IAFSS.FSS.3-291
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Motevalli, V. and Marks, C.H., 1991. Characterizing The Unconfined Ceiling Jet Under Steady-state Conditions: A Reassessment. Fire Safety Science 3: 301-312. doi:10.3801/IAFSS.FSS.3-301
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Roitman, V.M., Demekhin, V.N. and Abdul Majeed, M.A., 1991. A Simplified Prediction Method Of Real Fire Exposure As A Basis For An Analytical Structural Fire Design. Fire Safety Science 3: 751-759. doi:10.3801/IAFSS.FSS.3-751
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Morita, T., Wakamatsu, Takao, Uesugi, H. and Saito, H., 1991. Analyses Of Composite Beams And Frames At Elevated Temperature. Fire Safety Science 3: 761-770. doi:10.3801/IAFSS.FSS.3-761
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Peatross, M.J. and Beyler, C.L., 1994. Thermal Environment Prediction In Steel-bounded Preflashover Compartment Fires. Fire Safety Science 4: 205-216. doi:10.3801/IAFSS.FSS.4-205
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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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Sato, K., Suzuki, K., Sakai, Y. and Sega, S., 1994. Effects Of Flame Retardant On The Behavior And Temperature Profiles Of Flames Spreading Over Paper. Fire Safety Science 4: 503-514. doi:10.3801/IAFSS.FSS.4-503
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Roitman, V.M., 1994. Consideration Of Real Fire Conditions While Calculating The Critical Fire Load Density In Compartments On The Basis Of The Kinetic Approach. Fire Safety Science 4: 1067-1075. doi:10.3801/IAFSS.FSS.4-1067
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Wang, Y.C. and Moore, D.B., 1994. Predicting The Behaviour Of Reinforced Concrete Slabs At Elevated Temperature Using Finite Shell Element Analysis. Fire Safety Science 4: 1077-1088. doi:10.3801/IAFSS.FSS.4-1077
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Schneider, U., Morita, T. and Franssen, J.M., 1994. A Concrete Model Considering The Load History Applied To Centrally Loaded Columns Under Fire Attack. Fire Safety Science 4: 1101-1112. doi:10.3801/IAFSS.FSS.4-1101
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Ali, F.A., Sirnms, I.W. and O'connor, D.J., 1997. Behaviour Of Axially Restrained Steel Columns During Fire. Fire Safety Science 5: 1105-1116. doi:10.3801/IAFSS.FSS.5-1105
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Lau, P.W. and Barrett, J.D., 1997. Modelling Tension Strength Behaviour Of Structural Lumber Exposed To Elevated Temperatures. Fire Safety Science 5: 1177-1188. doi:10.3801/IAFSS.FSS.5-1177
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Audouin, L., Such, J.M., Malet, J.C. and Casselman, C., 1997. A Real Scenario For A Ghosting Flame. Fire Safety Science 5: 1261-1272. doi:10.3801/IAFSS.FSS.5-1261
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Saso, Y. and Saito, N., 2000. Effects Of Temperature, Aerodynamic Straining And Suppressant Concentration On Catalytic Inhibition By Cf3br In Methane-air
Counterflow Diffusion Flames. Fire Safety Science 6: 399-410. doi:10.3801/IAFSS.FSS.6-399
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Audouin, L. and Tourniaire, B., 2000. New Estimation Of The Thermal Interface Height In Forced-ventilation Enclosure Fires. Fire Safety Science 6: 555-566. doi:10.3801/IAFSS.FSS.6-555
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Omrane, A., Ossler, F., Alden, M., Gtoransson, U. and Holmstedt, G., 2003. Surface Temperature Measurement Of Flame Spread Using Thermographic Phosphors. Fire Safety Science 7: 141-152. doi:10.3801/IAFSS.FSS.7-141
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Dong, Y. and Li, X., 2005. The Behaviors Of H-section Steel Beam In Fire. Fire Safety Science 8: 201-209. doi:10.3801/IAFSS.FSS.8-201
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Sun, L., Zhou, X., Mahalingam, S. and Weise, D.R., 2005. Experimental Investigation Of The Velocity Field In Buoyant Diffusion Flames Using PIV And TPIV Algorithm. Fire Safety Science 8: 939-950. doi:10.3801/IAFSS.FSS.8-939
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Zhu, N., Jiang, Y. and Kato, S., 2005. Temperature Field-monitoring Using Ultrasonic Ct. Fire Safety Science 8: 1389-1400. doi:10.3801/IAFSS.FSS.8-1389
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Hirashima, T., Okuwaki K., Zhao, Xuansu, Sagami Y. and Toyoda K., 2014. An Experimental Investigation of Structural Fire Behaviour of a Rigid Steel Frame. Fire Safety Science 11: 677-690. 10.3801/IAFSS.FSS.11-677
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Shi W., Ji, Jie, Sun, J., Lo, S.M., Li, Linjie and Yuan X., 2014. Experimental Study on the Characteristics of Temperature Field of Fire Room under Stack Effect in a Scaled High-rise Building Model. Fire Safety Science 11: 419-431. 10.3801/IAFSS.FSS.11-419
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Oka, Y., Oka H. and Imazeki, O., 2014. Experimental study on temperature property along a tunnel axis with flat ceiling in natural ventilation. Fire Safety Science 11: 472-485. 10.3801/IAFSS.FSS.11-472
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