By Roy G.D. (ed.)

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This method provides an efficient research tool for studying flame stabilization and blow-off in practical combustors enabling transfer of science to technology. Combustion involves mixing of fuel and oxidant through large-scale structures and further intimate mixing through small-scale turbulence, and hence mixing in general is of paramount importance for efficient combustion. Nonaxisymmetric nozzles and inlets have been developed during the past decade in order to improve mixing and reduce combustion instability [5].

Buffalo, NY: State University of New York at Buffalo. 75–81. 3. Moriarty, R. , L. A. Enache, D. Pavlovic, and M. S. Rao. 1995. Synthesis of highenergy compounds. 8th ONR Propulsion Meeting Proceedings. Eds. G. D. Roy and F. A. Williams. La Jolla, CA: University of California at San Diego. 122–29. 4. Moriarty, R. , L. A. Enache, D. Pavlovic, D. Huang, and M. S. Rao. 1996. Synthesis of high-energy compounds. 9th ONR Propulsion Meeting Proceedings. Eds. G. D. Roy and K. Kailasanath. Washington, DC: Naval Research Laboratory.

Moriarty, R. , and M. S. Rao. 1993. Strained hydrocarbons. Benzvalene and derivatives. 6th ONR Propulsion Meeting Proceedings. University of Colorado at Boulder. 1–6. 2. Moriarty, R. , and M. S. Rao. 1994. Energetic azide compounds. 7th ONR Propulsion Meeting Proceedings. Eds. G. D. Roy and P. Givi. Buffalo, NY: State University of New York at Buffalo. 75–81. 3. Moriarty, R. , L. A. Enache, D. Pavlovic, and M. S. Rao. 1995. Synthesis of highenergy compounds. 8th ONR Propulsion Meeting Proceedings.

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