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Original Articles

Modelling nongrey gas-phase and soot radiation in luminous turbulent nonpremixed jet flames

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Pages 479-498 | Published online: 20 Feb 2007

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R. R. Dobbins, R. J. Hall, S. Cao, B. A. V. Bennett, M. B. Colket & M. D. Smooke. (2015) Radiative Emission and Reabsorption in Laminar, Ethylene-Fueled Diffusion Flames Using the Discrete Ordinates Method. Combustion Science and Technology 187:1-2, pages 230-248.
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Beth AnneV. Bennett, Zhongxian Cheng , RobertW. Pitz & MitchellD. Smooke. (2008) Computational and experimental study of oxygen-enhanced axisymmetric laminar methane flames. Combustion Theory and Modelling 12:3, pages 497-527.
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Articles from other publishers (17)

Eugenio Giacomazzi, Guido Troiani, Antonio Di Di Nardo, Giorgio Calchetti, Donato Cecere, Giuseppe Messina & Simone Carpenella. (2023) Hydrogen Combustion: Features and Barriers to Its Exploitation in the Energy Transition. Energies 16:20, pages 7174.
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Sandip Mazumder & Somesh P. Roy. (2023) Modeling Thermal Radiation in Combustion Environments: Progress and Challenges. Energies 16:10, pages 4250.
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Michael F. Modest & Sandip Mazumder. 2022. Radiative Heat Transfer. Radiative Heat Transfer 819 858 .
Sebastian Valencia, Sebastián Ruiz, Javier Manrique, Cesar Celis & Luís Fernando Figueira da Silva. (2021) Soot modeling in turbulent diffusion flames: review and prospects. Journal of the Brazilian Society of Mechanical Sciences and Engineering 43:4.
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Fengshan Liu, Jean-Louis Consalvi, Pedro J. Coelho, Frédéric Andre, Mingyan Gu, Vladimir Solovjov & Brent W. Webb. (2020) The impact of radiative heat transfer in combustion processes and its modeling – with a focus on turbulent flames. Fuel 281, pages 118555.
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Liu Changchun, Deng Tiandiao, Zhou Shasha, Liu Xinlei, Deng Jun, Luo Zhenmin & Ma Li. (2019) Radiation Model of Horizontal Jet Flame Governed by Buoyancy and Momentum. Journal of Heat Transfer 141:11.
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Pedro Rodrigues, Olivier Gicquel, Benedetta Franzelli, Nasser Darabiha & Ronan Vicquelin. (2019) Analysis of radiative transfer in a turbulent sooting jet flame using a Monte Carlo method coupled to large eddy simulation. Journal of Quantitative Spectroscopy and Radiative Transfer 235, pages 187-203.
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Christopher R. Shaddix & Timothy C. Williams. (2017) The effect of oxygen enrichment on soot formation and thermal radiation in turbulent, non-premixed methane flames. Proceedings of the Combustion Institute 36:3, pages 4051-4059.
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Gopalendu Pal, Ankur Gupta, Michael F. Modest & Daniel C. Haworth. (2015) Comparison of accuracy and computational expense of radiation models in simulation of non-premixed turbulent jet flames. Combustion and Flame 162:6, pages 2487-2495.
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Yu Zhang, Feng Qian, Yu Zhang, Carl M. Schietekat, Kevin M. Van Geem, and Guy & Guy B. Marin. (2015) Impact of flue gas radiative properties and burner geometry in furnace simulations. AIChE Journal 61:3, pages 936-954.
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Pavel P. Popov & Stephen B. Pope. (2014) Large eddy simulation/probability density function simulations of bluff body stabilized flames. Combustion and Flame 161:12, pages 3100-3133.
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Michael F. Modest. (2013) The Treatment of Nongray Properties in Radiative Heat Transfer: From Past to Present. Journal of Heat Transfer 135:6.
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Michael F Modest. 2013. Radiative Heat Transfer. Radiative Heat Transfer 724 778 .
R.S. Mehta, D.C. Haworth & M.F. Modest. (2010) Composition PDF/photon Monte Carlo modeling of moderately sooting turbulent jet flames. Combustion and Flame 157:5, pages 982-994.
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D.C. Haworth. (2010) Progress in probability density function methods for turbulent reacting flows. Progress in Energy and Combustion Science 36:2, pages 168-259.
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Gopalendu Pal & Michael F. Modest. (2010) A Narrow Band-Based Multiscale Multigroup Full-Spectrum k-Distribution Method for Radiative Transfer in Nonhomogeneous Gas-Soot Mixtures. Journal of Heat Transfer 132:2.
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L. Wang, J. Yang, M.F. Modest & D.C. Haworth. (2007) Application of the full-spectrum -distribution method to photon Monte Carlo solvers. Journal of Quantitative Spectroscopy and Radiative Transfer 104:2, pages 297-304.
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