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NTIS 바로가기한국화재소방학회 논문지= Fire science and engineering, v.30 no.1, 2016년, pp.12 - 16
Propane fires of 1000 to 3000 kW in the ISO 9705 fire room were simulated using FDS to study the problem of decreasing temperature with increasing fire size. A criterion is proposed for under-ventilated fires. The computed temperature at 2000 kW and above was lower than that at 1500 kW. The heat rel...
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K. McGrattan, S. Hositikka, R. McDermott, J. Floyd, C. Weinschenk and K. Overholt, "Fire Dynamics Simulator User's Guide", NIST SP 1019, NIST, Gaithersburg, MD, U.S.A. (2015).
W. C. Park, K. C. Ko and J. Park, "Investigation of a Room-Fire by Using FDS", Proceedings of 2003 Fall Annual Conference, Korea Institute of Fire Science & Engineering, pp. 3-8 (2003).
J. Park, "A Simulation of Room Fire under Ventilation-Controlled Conditions", MS Thesis, Dept. of Safety Engineering, Graduate School, Pukyong National University (2006).
Y. H. Kim and W. C. Park, "A Study on Simulation of Room Fire under Ventilation-Controlled Condition", Proceedings of 2012 Fall Annual Conference, Korea Institute of Fire Science & Engineering, pp. 129-132 (2012).
J. X. Wen and L. Y. Huang, "CFD Modelling of Confined Jet Fires under Ventilation-Controlled Conditions", Fire Safety Journal, Vol. 34, pp. 1-24 (2000).
ISO 9705, "Full-Scale Room Tests", International Standards Organization, Geneva, Switzerland (1992).
S. Y. Mun and C. H. Hwang, "Performance Evaluation of FDS for Predicting the Unsteady Fire Characteristics in a Semi-Closed ISO 9705 Room", Journal of Korea Institute of Fire Science & Engineering, Vol. 26, No. 3, pp. 21-28 (2012).
K. McGrattan, S. Hositikka, R. McDermott, J. Floyd, C. Weinschenk and K. Overholt, "Fire Dynamics Simulator Technical Reference Guide", NIST SP 1018, NIST, Gaithersburg, MD, U.S.A. (2015).
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