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COMBUSTION TECHNOLOGIES FOR A CLEAN ENVIRONMENT II

Soot Morphology and Optical Properties in Nonpremixed Turbulent Flame Environments

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Pages 207-229 | Received 21 Jun 1995, Accepted 15 Dec 1995, Published online: 21 May 2007

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E. V. Ivanova, A. F. Khalizov & G. Y. Gor. (2021) Kinetic model for competitive condensation of vapor between concave and convex surfaces in a soot aggregate. Aerosol Science and Technology 55:3, pages 302-315.
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Armin Veshkini, Seth B. Dworkin & Murray J. Thomson. (2016) Understanding soot particle size evolution in laminar ethylene/air diffusion flames using novel soot coalescence models. Combustion Theory and Modelling 20:4, pages 707-734.
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KIRKA. JENSEN, JILLM. SUO-ANTTILA & LINDAG. BLEVINS. (2007) MEASUREMENT OF SOOT MORPHOLOGY, CHEMISTRY, AND OPTICAL PROPERTIES IN THE VISIBLE AND NEAR-INFRARED SPECTRUM IN THE FLAME ZONE AND OVERFIRE REGION OF LARGE JP-8 POOL FIRES. Combustion Science and Technology 179:12, pages 2453-2487.
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ANTONIOM. VINCITORE & SELIMM. SENKAN. (1997) Experimental Studies of the Micro-Structures of Opposed Flow Diffusion Flames: Methane. Combustion Science and Technology 130:1-6, pages 233-246.
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