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Thermophysics and Aeromechanics

2024 year, number 2

Analysis of superheated steam influence on the content of solid carbon particles during diffusion combustion of liquid hydrocarbon fuel

E.P. Kopyev
Kutateladze Institute of Thermophysics SB RAS, Novosibirsk, Russia
Keywords: combustion, solid carbon particles, soot number, superheated steam

Abstract

The study is aimed at clarifying and revealing the basic principles of the effect of superheated steam and its parameters on the content of solid carbon particles (soot) in intermediate and final combustion products when burning liquid hydrocarbon fuel. Using a laboratory atmospheric atomizing burner, it was determined that there is a significant amount of solid carbon particles at the base of the burner flame. When heated air is used instead of steam, an increase in soot content by ~ 75% is observed. The analysis of the flame glow intensity in a narrow ultraviolet band also showed that in air the glow values are ~75% higher than when using superheated steam. At the same time, it has been established that the soot content in the final combustion products is affected only by the parameter of the dynamic impact of a jet, which determines air ejection from the environment both into the gas generation chamber and into the external flame region.