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Advances In Chemical Propulsion, Science To Technology by Roy,G D Ed

By Roy,G D Ed

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The Presumed Probability Density Function (PPDF) method has been developed and implemented to study flame stabilization in subsonic combustors with flame holders by Sergei Frolov’s group at the N. N. Semenov Institute in Moscow (Chapter 12). Turbulence–chemistry interaction, multiple thermochemical variables, variable pressure, near-wall effects, etc. are taken into account. This method provides an efficient research tool for studying flame stabilization and blow-off in practical combustors enabling transfer of science to technology.

Research Accomplishments Theoretical, computational, and experimental research has been pursued in the area of contaminant emission. If novel control methodologies are to be developed, a thorough understanding of the mechanisms involved in the generation of these constituents must be known. To this end, asymptotic analysis of flame structure to predict contaminant production has been successfully performed by Forman Williams at the University of California at San Diego (Chapter 25). In general, analytical methods employing Rate-Ratio Asymptotics (RRA) can help contribute to understanding of mechanisms of NOx production in diffusion flames, and can provide prediction of emission indices within reasonable accuracy.

1996. Synthesis of high-energy compounds. 9th ONR Propulsion Meeting Proceedings. Eds. G. D. Roy and K. Kailasanath. Washington, DC: Naval Research Laboratory. 123–29. 5. Roy, G. D. 1997. Introduction. In: Propulsion combustion: Fuels to emissions. Ed. G. D. Roy. Washington, DC: Taylor & Francis. 1–14. Chapter 3 SYNTHESIS OF NEW HIGH-ENERGY/HIGH-DENSITY HYDROCARBON FUEL SYSTEMS A. P. Marchand, K. C. V. Ramanaiah, S. Alihodzic, I. N. N. Namboothiri, E. Z. Dong, B. R. Aavula, S. B. Lewis, and S. G.

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