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Original Articles

Radiative Energy Blockage in Large Pool Fires

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Pages 21-37 | Received 07 Jan 1986, Accepted 01 May 1986, Published online: 21 May 2007

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Kaoru Wakatsuki, GregoryS. Jackson, Jungho Kim, Anthony Hamins, MarcR. Nyden & StephenP. Fuss. (2008) Determination of Planck Mean Absorption Coefficients for Hydrocarbon Fuels. Combustion Science and Technology 180:4, pages 616-630.
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A. Tuntomo, S. H. Park & C. L. Tien. (1989) INFRARED RADIATION PROPERTIES OF ETHYLENE. Experimental Heat Transfer 2:2, pages 91-103.
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S. H. PARK, A. J. STRETTON & C. L TIEN. (1988) Infrared Radiation Properties of Methyl Methacrylate Vapor. Combustion Science and Technology 62:4-6, pages 257-271.
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Articles from other publishers (32)

A. Galgano & C. Di Blasi. (2024) Assessment of the predictive capabilities of a solid-gas model for poly (methyl methacrylate) ignition. Fire Safety Journal 142, pages 104041.
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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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Yuhang Chen, Jun Fang, Xiaolei Zhang, Yanli Miao, Yujie Lin, Ran Tu & Longhua Hu. (2023) Pool fire dynamics: Principles, models and recent advances. Progress in Energy and Combustion Science 95, pages 101070.
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Kun Zhao, Zhirong Wang, Shichang Ma, Xiaoyu Ju, Pinkun Guo & Xingyan Cao. (2022) Experimental study on the diffusion burning and radiative heat delivery of two adjacent heptane pool fires. International Journal of Thermal Sciences 171, pages 107246.
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Ali S. Rangwala & Kemal S. Arsava. 2022. Advances in Energy and Combustion. Advances in Energy and Combustion 429 437 .
Shu Zheng, Yu Yang, Ran Sui & Qiang Lu. (2021) Effects of C2H2 and C2H4 radiation on soot formation in ethylene/air diffusion flames. Applied Thermal Engineering 183, pages 116194.
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Tzu-Yan Tseng & Kuang-Chung Tsai. (2020) Hot-zone boilover suppression using floating objects in crude oil tank fires. Fire Safety Journal 118, pages 103239.
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Tzu-Yan Tseng, Chia-Lung Wu & Kuang-Chung Tsai. (2020) Effect of bubble generation on hot zone formation in tank fires. Journal of Loss Prevention in the Process Industries 68, pages 104314.
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Yongzheng Yao, Ying Zhen Li, Haukur Ingason & Xudong Cheng. (2019) Scale effect of mass loss rates for pool fires in an open environment and in tunnels with wind. Fire Safety Journal 105, pages 41-50.
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Xiaochuan Shi, Raymond T. Ranellone, Hayri Sezer, Nathan Lamie, Leonard Zabilansky, Karen Stone & Ali S. Rangwala. (2017) Influence of ullage to cavity size ratio on in-situ burning of oil spills in ice-infested water. Cold Regions Science and Technology 140, pages 5-13.
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S. Vasanth, S.M. Tauseef, Tasneem Abbasi & S.A. Abbasi. (2017) Simulation of multiple pool fires involving two different fuels. Journal of Loss Prevention in the Process Industries 48, pages 289-296.
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Kaiyuan Li, Dennis S.W. Pau, Jinhui Wang & Jie Ji. (2015) Modelling pyrolysis of charring materials: determining flame heat flux using bench-scale experiments of medium density fibreboard (MDF). Chemical Engineering Science 123, pages 39-48.
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Longhua Hu, Shuai Liu & Long Wu. (2013) Flame radiation feedback to fuel surface in medium ethanol and heptane pool fires with cross air flow. Combustion and Flame 160:2, pages 295-306.
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. 2012. Lees' Loss Prevention in the Process Industries. Lees' Loss Prevention in the Process Industries 3129 3580 .
Dougal Drysdale. 2011. An Introduction to Fire Dynamics. An Introduction to Fire Dynamics 475 526 .
K. Wakatsuki, G.S. Jackson, A. Hamins & M.R. Nyden. (2007) Effects of fuel absorption on radiative heat transfer in methanol pool fires. Proceedings of the Combustion Institute 31:2, pages 2573-2580.
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J. A. Esfahani & A. Kashani. (2005) One-dimensional numerical model for degradation and combustion of polymethyl methacrylate. Heat and Mass Transfer 42:6, pages 569-576.
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Ee H. Yii, Andrew H. Buchanan & Charles M. Fleischmann. (2006) Simulating the effects of fuel type and geometry on post-flashover fire temperatures. Fire Safety Journal 41:1, pages 62-75.
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. 2005. Lees' Loss Prevention in the Process Industries. Lees' Loss Prevention in the Process Industries 51 100 .
A.Yu. Snegirev. (2004) Statistical modeling of thermal radiation transfer in buoyant turbulent diffusion flames. Combustion and Flame 136:1-2, pages 51-71.
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H. Koseki. (2000) Large Scale Pool Fires : Results Of Recent Experiments. Fire Safety Science 6, pages 115-132.
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Stephen P. Fuss, Matthew J. Hall & Ofodike A. Ezekoye. (1999) Band-integrated infrared absorptance of low-molecular-weight paraffin hydrocarbons at high temperatures. Applied Optics 38:13, pages 2895.
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Javad A Esfahani & Antonio C.M Sousa. (1999) Ignition of epoxy by a high radiation source. A numerical study. International Journal of Thermal Sciences 38:4, pages 315-323.
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Pierre Joulain. (1998) The behavior of pool fires: State of the art and new insights. Symposium (International) on Combustion 27:2, pages 2691-2706.
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S. P. Fuss, O. A. Ezekoye & M. J. Hall. (1996) The Absorptance of Infrared Radiation by Methane at Elevated Temperatures. Journal of Heat Transfer 118:4, pages 918-923.
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J. R. Vincent & S. R. Gollahalli. (1995) An Experimental Study of the Interaction of Multiple Liquid Pool Fires. Journal of Energy Resources Technology 117:1, pages 37-42.
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S. Jolly & K. Saito. (1992) Scale modeling of fires with emphasis on room flashover phenomenon. Fire Safety Journal 18:2, pages 139-182.
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Hiroki Ishida. (1992) Initiation of fire growth on fuel-soaked ground. Fire Safety Journal 18:3, pages 213-230.
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K.C. Adiga, D.E. Ramaker, P.A. Tatem & F.W. Williams. (1990) Numerical predictions for a simulated methane fire. Fire Safety Journal 16:6, pages 443-458.
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K.C. Adiga, D.E. Ramaker, P.A. Tatem & F.W. Williams. (1989) Modeling pool-like gas flames of propane. Fire Safety Journal 14:4, pages 241-250.
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P. Pagni. (1989) Fire Physics - Promises, Problems, And Progress. Fire Safety Science 2, pages 49-66.
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K. Adiga, D. Ramaker, P. Tatem & Fred Williams. (1989) Modeling Thermal Radiation In Open Liquid Pool Fires. Fire Safety Science 2, pages 241-250.
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