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Original Articles

An Asymptotic Analysis of Nitric Oxide Formation in Turbulent Diffusion Flames

Pages 39-49 | Received 20 Jun 1978, Published online: 03 May 2007

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Read on this site (4)

YEI-CHIN CHAO, YAU-WEI HUANG & DER-CHYUN WU. (2000) Feasibility of Controlling NOx Emissions from a Jet Flame by Acoustic Excitation. Combustion Science and Technology 158:1, pages 461-484.
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J.-Y. CHEN, W.-C. CHANG & M. KOSZYKOWSKI. (1995) Numerical Simulation and Scaling of NOx Emissions from Turbulent Hydrogen Jet Flames with Various Amounts of Helium Dilution. Combustion Science and Technology 110-111:1, pages 505-529.
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KUMAR RAMOHALLI, STEVE JONES & REZA BASHAR. (1984) Some Experimental Data on Liftoff Characteristics of Turbulent Jet Flames. Combustion Science and Technology 36:3-4, pages 199-203.
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J. JANICKA & N. PETERS. (1980) Asymptotic Evaluation of the Mean NO-Production Rate in Turbulent Diffusion Flames. Combustion Science and Technology 22:1-2, pages 93-96.
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Articles from other publishers (15)

Christoph Meraner, Tian Li, Mario Ditaranto & Terese Løvås. (2020) Effects of scaling laws on the combustion and NO characteristics of hydrogen burners. Combustion and Flame 214, pages 407-418.
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Rohit Saini, Swetha Prakash, Ashoke De & Rakesh Yadav. (2018) Investigation of NOx in piloted stabilized methane-air diffusion flames using finite-rate and infinitely-fast chemistry based combustion models. Thermal Science and Engineering Progress 5, pages 144-157.
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J.P.H. Sanders, J.-Y. Chen & I. Gökalp. (1997) Flamelet-based modeling of NO formation in turbulent hydrogen jet diffusion flames. Combustion and Flame 111:1-2, pages 1-15.
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J. P. H. Sanders & I. Gokalp. (1997) Nonequilibrium and Differential Diffusion Effects in Turbulent Hydrogen Diffusion Flames. Journal of Thermophysics and Heat Transfer 11:3, pages 384-390.
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P. G. Hill & B. Douville. (1997) Relating Burning Rate and NO Formation to Pressure Development in Two-Stroke Diesel Engines. Journal of Energy Resources Technology 119:2, pages 129-136.
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J. Sanders & I. Goekalp. (1996) Flamelet based analysis of non equilibrium effects and NO-formation in turbulent hydrogen diffusion flames. Flamelet based analysis of non equilibrium effects and NO-formation in turbulent hydrogen diffusion flames.
Ching-Shun Chen, Keh-Chin Chang & Jyh-Yuan Chen. (1994) Application of a robust β-pdf treatment to analysis of thermal NO formation in nonpremixed hydrogen-air flame. Combustion and Flame 98:4, pages 375-390.
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J.-Y. Chen & W. Kollmann. (1992) PDF modeling and analysis of thermal NO formation in turbulent nonpremixed hydrogen-air jet flames. Combustion and Flame 88:3-4, pages 397-412.
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F. A. WILLIAMS. (1986) Asymptotic methods in turbulent combustion. AIAA Journal 24:6, pages 867-875.
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Norbert Peters & Forman A. Williams. (1983) Liftoff characteristics of turbulent jet diffusion flames. AIAA Journal 21:3, pages 423-429.
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N. PETERS & F. WILLIAMS. (1982) Lift-off characteristics of turbulent jet diffusion flames. Lift-off characteristics of turbulent jet diffusion flames.
Pierre Moreau & Roland Borghi. (1981) Experimental and Theoretical Studies of Nitrogen Oxide Production in a Turbulent Premixed Flame. Journal of Energy 5:3, pages 152-157.
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William B. BushStanton F. Fink. (1981) On Diffusion Flames in Turbulent Shear Flows: Modeling Reactant Consumption in a Circular Fuel Jet. AIAA Journal 19:3, pages 372-379.
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Paul A. LibbyF. A. Williams. (1981) Some Implications of Recent Theoretical Studies in Turbulent Combustion. AIAA Journal 19:3, pages 261-274.
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N. Peters & S. Donnerhack. (1981) Structure and similarity of nitric oxide production in turbulent diffusion flames. Symposium (International) on Combustion 18:1, pages 33-42.
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