Modelling of Thermally Radiating Diffusion Flames with Detailed Chemistry and Transport
Author:
Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-642-84637-3_6
Reference12 articles.
1. Peters N.: Laminar Diffusion Flamelet Models in Non-Premixed Turbulent Combustion. Prog. Energy Combust. Sci. 10 (1984) 319–339.
2. Sohrab S. H., Linän A., Williams F. A.: Asymptotic Theory of Diffusion Flame Extinction with Radiant Loss from the Flame Zone. Combust. Sci. and Tech. 27 (1982) 143–154.
3. Müller U. C.: Der Einfluß von Strahlungsverlusten auf die thermische NO-Bildung in laminaren CO-H2-Diffusionsflammen, Diplomarbeit, RWTH Aachen (1989).
4. Drake, M. C., Blint, R. J.: Thermal NOx in Stretched Laminar Opposed-Flow Diffusion Flames with CO/H2/N2 Fuel. Combust. Flame 76 (1989) 151–167.
5. Rogg B.: Response and Flamelet Structure of Stretched Premixed Methane-Air Flames. Combust. Flame 73 (1988) 45–65.
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