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Original Articles

On the Structure of Hydrogen Diffusion Flames with Reduced Kinetic Mechanisms

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Pages 247-277 | Received 25 Aug 1992, Accepted 09 Aug 1993, Published online: 27 Apr 2007

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Sang Kyu Choi, Saeed M. Al-Noman & Suk Ho Chung. (2015) Simulation of Non-Autoignited and Autoignited Laminar Non-Premixed Jet Flames of Syngas in Heated Coflow Air. Combustion Science and Technology 187:1-2, pages 132-147.
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K.B. Lim, B.H. Chao, P.B. Sunderland & R.L. Axelbaum. (2008) A theoretical study of spontaneous ignition of fuel jets in an oxidizing ambient with emphasis on hydrogen jets. Combustion Theory and Modelling 12:6, pages 1179-1196.
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E.-S. CHO, S. H. CHUNG*T. K. OH. (2006) LOCAL KARLOVITZ NUMBERS AT EXTINCTION FOR VARIOUS FUELS IN COUNTERFLOW PREMIXED FLAMES. Combustion Science and Technology 178:9, pages 1559-1584.
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Antonio L. Sánchez, Amable Liñán & Forman A. Williams. (1997) A Generalized Burke-Schumann Formulation for Hydrogen-Oxygen Diffusion Flames Maintaining Partial Equilibrium of the Shuffle Reactions. Combustion Science and Technology 123:1-6, pages 317-345.
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A. L. SÁNCHEZ, A. LIÑÁN, F. A. WILLIAMS & G. BALAKRISHNAN. (1995) Theory of Structures of Hydrogen-Air Diffusion Flames. Combustion Science and Technology 110-111:1, pages 277-301.
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Articles from other publishers (8)

Antonio L. Sánchez & Forman A. Williams. (2014) Recent advances in understanding of flammability characteristics of hydrogen. Progress in Energy and Combustion Science 41, pages 1-55.
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Tae-Kyun Oh & Chae-Hoon Sohn. (2008) A Numerical Study on Effect of Radiative Heat Loss on Extinction of Hydrogen Diffusion Flames at High Pressure. Transactions of the Korean Society of Mechanical Engineers B 32:5, pages 351-358.
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C.H Sohn, I.M Jeong & S.H Chung. (2002) Numerical study of the effects of pressure and air-dilution on no formation in laminar counterflow diffusion flames of methane in high temperature air. Combustion and Flame 130:1-2, pages 83-93.
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J.Y. Hwang, Y.S. Gil, J.I. Kim, M. Choi & S.H. Chung. (2001) Measurements of temperature and OH radical distributions in a silica generating flame using CARS and PLIF. Journal of Aerosol Science 32:5, pages 601-613.
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C.H Sohn & S.H Chung. (2000) Effect of pressure on the extinction, acoustic pressure response, and NO formation in diluted hydrogen–air diffusion flames. Combustion and Flame 121:1-2, pages 288-300.
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C.H. Sohn, S.H. Chung, S.R. Lee & J.S. Kim. (1998) Structure and acoustic-pressure response of hydrogen–oxygen diffusion flames at high pressure. Combustion and Flame 115:3, pages 299-312.
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Su-Ryong Lee, Sim-Soo Park & Suk-Ho Chung. (1995) Flame structure and thermal NOx formation in hydrogen diffusion flames with reduced kinetic mechanisms. KSME Journal 9:3, pages 377-384.
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Fuchen Wang, Xun Tao, Fan Zhou, Xinlei Yu, Songling Guo, Yunfei Gao, Lu Ding, Guangsuo Yu & Zhenghua Dai. (2022) The Effect of Co2 Addition on Oxy-Fuel Combustion of H2s: A Reaction Pathway Analysis. SSRN Electronic Journal.
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