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Short Communication

A Study of NOx Reduction by Acoustic Excitation in a Liquid Fueled Burner

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Pages 397-408 | Received 01 May 1995, Accepted 23 Apr 1996, Published online: 06 Apr 2007

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Read on this site (3)

G. Chiranjeevi Vidyasagar, Vasudevan Raghavan & K. Srinivasan. (2011) The Effect of Upstream Annular Cavities in Circular Jet Burners on Stability Characteristics of Jet Diffusion Flames. Combustion Science and Technology 183:6, pages 614-626.
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D. S. Ferreira, P. T. Lacava, M. A. Ferreira & J. A. de Carvalho, Jr. (2009) NOx and CO emissions and soot presence in partially premixed acoustically excited flames. Journal of the Energy Institute 82:3, pages 123-132.
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Kranthi Yellugari, Rodrigo Villalva Gomez & Ephraim Gutmark. Effects of Swirl Number and Central Rod on Flow in a Lean Premixed Swirl Combustor. Combustion Science and Technology 0:0, pages 1-29.
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Articles from other publishers (13)

Myunggeun Ahn, Youngbin Yoon & Seongpil Joo. (2022) Effects of acoustic excitation on pinch-off flame structure and NOx emissions in H2/CH4 flame. International Journal of Hydrogen Energy 47:26, pages 13178-13190.
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Kai Deng, Mingxiao Wang, Zhongliang Shen, Yanjun Hu & Yingjie Zhong. (2019) Effect of Different Acoustic Parameters on NOx Emissions of Partially Premixed Flame. Applied Sciences 9:7, pages 1490.
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Omid Ali Zargar, Rong Fung Huang & Ching Min Hsu. (2019) Effect of acoustic excitation on flames of swirling dual-disk double-concentric jets. Experimental Thermal and Fluid Science 100, pages 337-348.
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M. Orain & Y. Hardalupas. (2011) Measurements of local mixture fraction of reacting mixture in swirl-stabilised natural gas-fuelled burners. Applied Physics B 105:2, pages 435-449.
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K. Lakshminarasimhan, N. T. Clemens & O. A. Ezekoye. (2006) Characteristics of strongly-forced turbulent jets and non-premixed jet flames. Experiments in Fluids 41:4, pages 523-542.
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Cristiane A. Martins, João A. CarvalhoJrJr, Carlos A.G. Veras, Marco A. Ferreira & Pedro T. Lacava. (2006) Experimental measurements of the NOx and CO concentrations operating in oscillatory and non-oscillatory burning conditions. Fuel 85:1, pages 84-93.
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Daniel Ferreira, Pedro Lacava, Marco Ferreira & João Carvalho Jr. (2005) Experimental Aspects of Partially Premixed Pulsating Combustion. Experimental Aspects of Partially Premixed Pulsating Combustion.
Yannis Hardalupas & Mikael Orain. (2005) Local Equivalence Ratio and Degree of Premixedness of Reacting Mixture in Swirl-Stabilised Natural Gas Fuelled Burners. Local Equivalence Ratio and Degree of Premixedness of Reacting Mixture in Swirl-Stabilised Natural Gas Fuelled Burners.
Yannis Hardalupas & Mikael Orain. (2002) Equivalence Ratio and Degree of Premixedness of Reacting Mixture in Swirl-Stabilised Ethanol-Fuelled Burners. Equivalence Ratio and Degree of Premixedness of Reacting Mixture in Swirl-Stabilised Ethanol-Fuelled Burners.
Y Hardalupas & A Selbach. (2002) Imposed oscillations and non-premixed flames. Progress in Energy and Combustion Science 28:1, pages 75-104.
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Christian Oliver Paschereit, Ephraim Gutmark & Wolfgang Weisenstein. (1999) Coherent structures in swirling flows and their role in acoustic combustion control. Physics of Fluids 11:9, pages 2667-2678.
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O. Delabroy, E. Haile, F. Lacas, S. Candel, A. Pollard, A. Sobiesiak & H.A. Becker. (1998) Passive and active control of NOx in industrial burners. Experimental Thermal and Fluid Science 16:1-2, pages 64-75.
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E. Haile, O. Delabroy, D. Durox, F. Lacas & S. Candel. 1998. Flow Control. Flow Control 467 499 .

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