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Titlebook: Advanced Combustion Science; Tsuneo Someya Book 1993 Springer-Verlag Tokyo 1993 carbon.color.combustion.diffusion.flow.growth.heat.heat tr

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期刊全称Advanced Combustion Science
影响因子2023Tsuneo Someya
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图书封面Titlebook: Advanced Combustion Science;  Tsuneo Someya Book 1993 Springer-Verlag Tokyo 1993 carbon.color.combustion.diffusion.flow.growth.heat.heat tr
影响因子Non-uniform combustion, as encountered in diesel and gas turbine engines, furnaces, and boilers, is responsible for the conversion of fossil fuel to energy and also for the corresponding formation of pollutants. In spite of great research efforts in the past, the mechanism of non-uniform combustion has remained less explored than that of other combustion types, since it consists of many, mostly transient processes which influence each other. In view of this background, a group research project, "Exploration of Combustion Mechanism", was established to explore the mechanism of combustion, especially that of diffusive combustion, and also to find efficient ways to control the combustion process for better utilization of fuel and the reduction of pollutant emission. The group research was started, after preparatory activity of 2 years, in April 1988, for a period of 3 years, as a project with a Grant-in-Aid for Scientific Research of Priority Area subsidized by the Ministry of Education, Science and Culture of Japan. The entire group of 43 members was set up as an organizing committee of 13 members, and five research groups, consisting of 36 members. The research groups were: (1) Stea
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Behaviors of Trace Metals in EnvironmentNumerical modeling based on chemical kinetics is a powerful technique for the analysis of many combustion phenomena including turbulent diffusion combustion, as is reviewed from time to time [1].
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