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Original Articles

Modelling of Jet- and Swirl-stabilized Reacting Flows in Axisymmetric Combustors

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Pages 135-153 | Received 13 Aug 1987, Published online: 17 Apr 2007

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BIAO ZHOU, B.A. FLECK, J.E.D. GAUTHIER & CHENGKANG WU. (2001) Pulverized-Coal Combustion in Wall-Protecting-Jets Combustor (WPJC). Combustion Science and Technology 162:1, pages 281-302.
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A. BRINK, P. KILPINEN, M. HUPA & L. KJÄLDMAN. (1999) Study of Alternative Descriptions of Methane Oxidation for CFD Modeling of Turbulent Combustors. Combustion Science and Technology 141:1-6, pages 59-81.
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Articles from other publishers (18)

Ge Hu, Jianzhong Li, Wu Jin, Jingzhou Zhang, Li Yuan & Weikuo Zhai. (2022) Experimental Investigation on Flow Characteristics of a Reverse-Flow Combustor. International Journal of Aerospace Engineering 2022, pages 1-13.
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Saulo A. GomezClaudia R. de AndradeAmilcar P. Pimenta. (2020) Numerical Description of the Turbulent Combustion of Methane-oxygen at 20 atm using the ReduceSens Mechanism. Numerical Description of the Turbulent Combustion of Methane-oxygen at 20 atm using the ReduceSens Mechanism.
Masoud Darbandi, Majid Ghafourizadeh & G E. Schneider. (2020) Soot Evolution in a JP-Fueled Gas-Turbine Swirl Combustor. Soot Evolution in a JP-Fueled Gas-Turbine Swirl Combustor.
Masoud Darbandi, Majid Ghafourizadeh & Gerry Schneider. (2019) Numerical Study to Evaluate Soot Formation in a JP Combustor Equipped to Different Types of Swirler. Numerical Study to Evaluate Soot Formation in a JP Combustor Equipped to Different Types of Swirler.
Omer Musa, Chen Xiong, Zhou Changsheng, Zhu Min & Omer Musa. (2017) Combustion modeling of unsteady reacting swirling flow in solid fuel ramjet. Combustion modeling of unsteady reacting swirling flow in solid fuel ramjet.
Masoud Darbandi & Majid Ghafourizadeh. (2015) Solving turbulent diffusion flame in cylindrical frame applying an improved advective kinetics scheme. Theoretical and Computational Fluid Dynamics 29:5-6, pages 413-431.
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Nahm Roh Joo, Ho Young Kim, Jin Taek Chung & Sang II Choi. (2002) The characteristics of pulverized coal combustion in the two stage cyclone combustor. KSME International Journal 16:9, pages 1112-1120.
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Jose Lopes, Viriato Semião & Maria da Graça Carvalho. (2002) On the effect of the local turbulence scales on the mixing rate of diffusion flames: assessment of two different combustion models. International Journal of Energy Research 26:10, pages 893-920.
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A. Datta. (2000) Influence of inlet flow conditions on the performance of a swirl-stabilized combustor burning liquid fuel spray. International Journal of Energy Research 24:5, pages 373-390.
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C Y Ma, T Mahmud, P H Gaskell & E Hampartsoumian. (2016) Numerical predictions of a turbulent diffusion flame in a cylindrical combustor using eddy dissipation and flamelet combustion models. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 213:7, pages 697-705.
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E. M. Amin, G. E. Andrews, M. Pourkashnian, A. Williams & R. A. Yetter. (1997) A Computational Study of Pressure Effects on Pollutant Generation in Gas Turbine Combustors. Journal of Engineering for Gas Turbines and Power 119:1, pages 76-83.
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B. Pardue, S. Han, Don Bai & Charles Schafer. (1996) Chemically reacting flow in converging and diverging combustion chambers. Chemically reacting flow in converging and diverging combustion chambers.
Z. BeeriC. A. BlunsdonW. M. G. MalalasekeraJ. C. Dent. (1996) Comprehensive Modeling of Turbulent Flames With the Coherent Flame-Sheet Model—Part II: High-Momentum Reactive Jets. Journal of Energy Resources Technology 118:1, pages 72-76.
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Xue-Song Bai & Laszlo Fuchs. (1995) Sensitivity study of turbulent reacting flow modeling in gas turbine combustors. AIAA Journal 33:10, pages 1857-1864.
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H.K. Ma, F.H. Lee & M.W. Wang. (1993) Numerical study on heat and mass transfer in a liquid-fueled gas turbine combustor. International Journal of Heat and Mass Transfer 36:13, pages 3271-3281.
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R. CHANDRASEKHAR & S. TIWARI. (1991) Application of a Reynolds Stress turbulence model to a supersonic hydrogen-air diffusion flame. Application of a Reynolds Stress turbulence model to a supersonic hydrogen-air diffusion flame.
M. Nikjooy & R. M. C. So. (1989) On the modelling of scalar and mass transport in combustor flows. International Journal for Numerical Methods in Engineering 28:4, pages 861-877.
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G.J. Yoo & R.M.C. So. (1989) Variable density effects on axisymmetric sudden-expansion flows. International Journal of Heat and Mass Transfer 32:1, pages 105-120.
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