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Original Articles

LAMINAR DIFFUSION FLAMES IN A MULTIPORT BURNER

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Pages 1463-1484 | Received 21 Oct 2004, Accepted 21 Dec 2004, Published online: 25 Jan 2007

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Yueh-Heng Li, Chun-Han Chen & Mustafa Ilbas. (2022) Effect of Diluent Addition on Combustion Characteristics of Methane/Nitrous Oxide Inverse Tri-Coflow Diffusion Flames. Combustion Science and Technology 194:10, pages 1973-1993.
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Koushik Balasubramanian & R. I. Sujith. (2008) Nonlinear Response of Diffusion Flames to Uniform Velocity Disturbances. Combustion Science and Technology 180:3, pages 418-436.
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Articles from other publishers (10)

Aravind Muraleedharan, E.V. Jithin, B. Aravind, Sudarshan Kumar & Ratna Kishore Velamati. (2020) Combustion characteristics of syngas laminar microjet diffusion flames. Journal of the Taiwan Institute of Chemical Engineers 115, pages 47-59.
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Frédéric Morandini, Tom Toulouse, Xavier Silvani, Antoine Pieri & Lucile Rossi. (2019) Image-Based Diagnostic System for the Measurement of Flame Properties and Radiation. Fire Technology 55:6, pages 2443-2463.
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Ashraf Kotb & Hany Saad. (2018) Case study for co and counter swirling domestic burners. Case Studies in Thermal Engineering 11, pages 98-104.
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Longhua Hu, Lili Huang, Qiang Wang & Kazunori Kuwana. (2017) Experimental study and analysis on the interaction between two slot-burner buoyant turbulent diffusion flames at various burner pitches. Combustion and Flame 186, pages 105-113.
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Kazunori Kuwana, Seia Kato, Akihiro Kosugi, Taro Hirasawa & Yuji Nakamura. (2016) Experimental and theoretical study on the interaction between two identical micro-slot diffusion flames: Burner pitch effects. Combustion and Flame 165, pages 346-353.
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Liron Hamelnick & Jerrold Greenberg. (2013) Multiple Polydisperse Spray Diffusion Flames; Influence of Droplet Size Distributions. Multiple Polydisperse Spray Diffusion Flames; Influence of Droplet Size Distributions.
Shuhn-Shyurng Hou & Ching-Hung Chou. (2013) Parametric Study of High-Efficiency and Low-Emission Gas Burners. Advances in Materials Science and Engineering 2013, pages 1-7.
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Michael B. Johnson & Andrzej Sobiesiak. (2011) Hysteresis of methane inverse diffusion flames with co-flowing air and combustion products. Proceedings of the Combustion Institute 33:1, pages 1079-1085.
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F. Liu & G.J. Smallwood. (2011) Control of the structure and sooting characteristics of a coflow laminar methane/air diffusion flame using a central air jet: An experimental and numerical study. Proceedings of the Combustion Institute 33:1, pages 1063-1070.
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Shuhn-Shyurng Hou, Chien-Ying Lee & Ta-Hui Lin. (2007) Efficiency and emissions of a new domestic gas burner with a swirling flame. Energy Conversion and Management 48:5, pages 1401-1410.
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