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Original Articles

Mass Fire Model: An Experimental Study of the Heat Transfer to Liquid Fuel Burning from a Sand-Filled Pan Burner

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Pages 113-129 | Received 03 Aug 1971, Published online: 27 Apr 2007

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A. Shinotake, S. Koda & K. Akita. (1985) An Experimental Study of Radiative Properties of Pool Fires Of an Intermediate Scale. Combustion Science and Technology 43:1-2, pages 85-97.
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Xiepeng Sun, Xiaolei Zhang, Jiang Lv, Xiaotao Chen & Longhua Hu. (2023) Experimental study on the buoyant turbulent diffusion flame height of various intermittent levels. Applied Energy 351, pages 121699.
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H. X. Wan, X. Y. Liu & Y. C. Zhang. (2022) Probability Distribution of Plume Merging Induced by Two Unequal Turbulent Diffusion Flames of Propane. Fluid Dynamics 57:6, pages 876-886.
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Tong Xu & Peng Lei. (2022) Experimental study on flame height and heat release rate estimation of diesel-wetted wood powder fire. Case Studies in Thermal Engineering 33, pages 101906.
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Peng Lei, Changkun Chen, Tong Xu, Weibing Jiao & Yulun Zhang. (2021) Study on temperature variation and pulsation frequency of diesel-wetted wood powder fire with different fuel component ratios and burner diameters. Case Studies in Thermal Engineering 28, pages 101389.
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Kaiyuan Li, Shaohua Mao & Rui Feng. (2018) Estimation of Heat Release Rate and Fuel Type of Circular Pool Fires Using Inverse Modelling Based on Image Recognition Technique. Fire Technology 55:3, pages 667-687.
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Trevor B. Maynard & Jonathan W. Butta. (2017) A Physical Model for Flame Height Intermittency. Fire Technology 54:1, pages 135-161.
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Jie Ji, Huaxian Wan, Zihe Gao, Yanyun Fu, Jinhua Sun, Yongming Zhang, Kaiyuan Li & Simo Hostikka. (2016) Experimental study on flame merging behaviors from two pool fires along the longitudinal centerline of model tunnel with natural ventilation. Combustion and Flame 173, pages 307-318.
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Gunnar Heskestad. (1999) Turbulent jet diffusion flames: consolidation of flame height data. Combustion and Flame 118:1-2, pages 51-60.
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G. Heskestad. (1998) Dynamics of the fire plume. Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences 356:1748, pages 2815-2833.
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Gunnar Heskestad. (1991) A reduced-scale mass fire experiment. Combustion and Flame 83:3-4, pages 293-301.
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Y. Hasemi. (2004) Deterministic properties of turbulent flames and implications for fire growth. Fire and Materials 13:1, pages 45-52.
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L. Orloff, J. De Ris & M.A. Delichatsios. (1988) General correlations of chemical species in turbulent fires. Symposium (International) on Combustion 21:1, pages 101-109.
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Yuji Hasemi & Mitsuru Nishihata. (1987) Deterministic Properties of Turbulent Diffusion Flames from Low Q* Fires. Fire Science and Technology 7:2, pages 2_27-2_34.
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E. Zukoski. (1986) Fluid Dynamic Aspects Of Room Fires. Fire Safety Science 1, pages 1-30.
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C. P. Bankston & L. H. Back. (1985) Pool fire-ventilation crossflow experiments in a simulated aircraft cabin interior. Journal of Aircraft 22:10, pages 861-868.
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G. Cox & R. Chitty. (1985) Some Source-Dependent effects of unbounded fires. Combustion and Flame 60:3, pages 219-232.
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Gunnar Heskestad. (1983) Luminous heights of turbulent diffusion flames. Fire Safety Journal 5:2, pages 103-108.
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Lawrence Orloff & John De Ris. (1982) Froude modeling of pool fires. Symposium (International) on Combustion 19:1, pages 885-895.
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P.H. Thomas. (1981) Fire modeling and fire behavior in rooms. Symposium (International) on Combustion 18:1, pages 503-518.
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Walter Brötz & Axel Schönbucher. (2004) Wärme‐ und Stofftransport in Tankflammen. Chemie Ingenieur Technik 50:8, pages 573-585.
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