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Sato, H., Ouchi, T. and Kurioka, H., 1989. Fire Safety Design For Buildings With An Atrium. Fire Safety Science 2: 939-948. doi:10.3801/IAFSS.FSS.2-939
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Hiroomi, S., Sugawa, O., Kurioka, H. and Takahash, W., 1994. Plume Behavior In A Confined Tall And Narrow Space-as One Of Sub-models Of Plume For An Atrium Fire-. Fire Safety Science 4: 551-562. doi:10.3801/IAFSS.FSS.4-551
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Satoh, H., Sugawa, O. and Kurioka, H., 1997. Flame Inclination With Induced Wind Through Inlet Opening In A Tall And Narrow Atrium. Fire Safety Science 5: 273-284. doi:10.3801/IAFSS.FSS.5-273
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Oka, Y., Kurioka, H., Satoh, H. and Sugawa, O., 2000. Modelling Of Unconfined Flame Tilt In Cross-Winds. Fire Safety Science 6: 1101-1112. doi:10.3801/IAFSS.FSS.6-1101
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Yamada, T., Takanashi, K., Yanai, E., Suzuki, T., Sekizawa, A., Sato, H. and Kurioka, H., 2003. An Experimental Study Of Ejected Flames And Combustion Efficiency. Fire Safety Science 7: 903-914. doi:10.3801/IAFSS.FSS.7-903
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Kakegawa, S., Yahshiro ,Y., Satoh, H., Kurioka, H., Kasahara, I., Ikehata, Y., Saito, N. and Turuda, T., 2003. Design Fires For Means Of Egress In Office Buildings Based On Full-scale Fire Experiments. Fire Safety Science 7: 975-986. doi:10.3801/IAFSS.FSS.7-975
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Imazeki, O., Kurioka, H., Amano, R., Oka, Y. and Takigawa, S., 2005. Computational Fluid Dynamics Of Hot Current From A Fire Source Near A Tunnel Wall. Fire Safety Science 8: 1485-1496. doi:10.3801/IAFSS.FSS.8-1485
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