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Original Articles

EFFECT OF SWIRL ON PERFORMANCE OF FOAM POROUS MEDIUM BURNERS

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Pages 729-761 | Received 23 Nov 2004, Accepted 23 May 2005, Published online: 25 Jan 2007

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Xiaoyao Zhao, Weikang Peng, Xiao Yu & Baolu Shi. (2023) A comparison of partially premixed methane/air combustion in confined vane-swirl and jet-swirl combustors. Combustion Science and Technology 195:2, pages 212-231.
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A. M. Hamed, A. M. Moustafa, M. M. Kamal & A. E. Hussin. (2022) Single and Double Flow Pulsations of Normal and Inverse Partially Premixed Methane-Air Flames. Combustion Science and Technology 194:10, pages 1994-2024.
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Premananda Pradhan, Purna Chandra Mishra & Bibhuti Bhusan Samantaray. (2018) Performance and Emission Analysis of a Novel Porous Radiant Burner for Domestic Cooking Application. Heat Transfer Engineering 39:9, pages 784-793.
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Vladimir M. Shmelev. (2014) Surface Burning on a Foam Metal Matrix with the Ceramic Coating. Combustion Science and Technology 186:7, pages 943-952.
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T.C. Hayashi, I. Malico & J.C.F. Pereira. (2010) Effect of different downstream temperatures on the performance of a two-layer porous burner. Combustion Theory and Modelling 14:3, pages 405-423.
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Articles from other publishers (9)

James Visuvasam & Hammad Alotaibi. (2023) Analysis of Von Kármán Swirling Flows Due to a Porous Rotating Disk Electrode. Micromachines 14:3, pages 582.
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Caiyuan Xiao, Milad Omidi, A. Surendar, As’ad Alizadeh, Dmitry O. Bokov, Binyamin & Davood Toghraie. (2022) Simulation of Combustion Flow of Methane Gas in a Premixed Low-Swirl Burner using a Partially Premixed Combustion Model. Journal of Thermal Science 31:5, pages 1663-1681.
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Bader A Alfarraj, Ahmed A. Al-Harbi, Saud A. Binjuwair & Abdullah Alkhedhair. (2022) The Characterization of Liquefied Petroleum Gas (LPG) Using a Modified Bunsen Burner. Journal of Combustion 2022, pages 1-9.
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Carlos E. Arrieta, Alex M. García & Andrés A. Amell. (2017) Experimental study of the combustion of natural gas and high-hydrogen content syngases in a radiant porous media burner. International Journal of Hydrogen Energy 42:17, pages 12669-12680.
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L. Henríquez-Vargas, M. Valeria & V. Bubnovich. (2015) Numerical study of lean combustibility limits extension in a reciprocal flow porous media burner for ethanol/air mixtures. International Journal of Heat and Mass Transfer 89, pages 1155-1163.
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Bibhuti Bhusan Samantaray, P. Pradhan, Dillip K. Sahoo & P.C. Mishra. (2015) Comparative Thermal Performance and Emission Analysis of Flat, Semi-swirl and Full-swirl Cooking Burners-Experimental Results. Procedia Engineering 127, pages 932-939.
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M. Abdul Mujeebu, A.A. Mohamad & M.Z. Abdullah. 2014. The Role of Colloidal Systems in Environmental Protection. The Role of Colloidal Systems in Environmental Protection 615 633 .
Susie Wood & Andrew T. Harris. (2008) Porous burners for lean-burn applications. Progress in Energy and Combustion Science 34:5, pages 667-684.
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M. M. Kamal & A Amohamad. (2007) Investigation of liquid fuel combustion in a cross-flow burner. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy 221:3, pages 371-385.
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