Development of the Oxygen-Enriched Burner Using Self-Induced Oscillation

Author:

Yamaguchi Masashi1,Saito Takeshi1,Yamamoto Yasuyuki1,Hagihara Yoshiyuki1

Affiliation:

1. Combustion Technology Sec., Taiyo Nippon Sanso Corporation, 3054-3 Shimokurosawa, Takane-cho, Hokuto-shi, Yamanashi 408-0015, Japan e-mail:

Abstract

We have developed the novel oxygen-enriched burner using the self-induced oscillating phenomenon of jet flow which has excellent radiation heat transfer characteristics. We revealed that the flame property suitable for radiation heat transfer is obtained by extending the oscillation cycle. By optimizing the connecting tube length and diameter, we got the stable oscillating flame in 1 s-oscillation period. At this time, the relationship between the burner structure including the connecting tube and the oscillation period can be easily evaluated by the dimensionless tube length and Strouhal number. In addition, combining multi-staged combustion technology, the burner can improve heat transfer efficiency by 9.1% compared with the conventional oxygen-enriched burner. We confirmed that the burner has a low NOx emission level below 55 ppm.

Publisher

ASME International

Subject

Fluid Flow and Transfer Processes,General Engineering,Condensed Matter Physics,General Materials Science

Reference10 articles.

1. Development of High Speed Oxygen Burner Lance for Electric Arc Furnace;Igarashi;Nippon Sanso Engineering Report (in Japanese),2003

2. Ultra-Low NOx Oxygen-enriched Combustion System using Oscillation Combustion Method;Hagihara;Energy Procedia,2017

3. Development of Oxy-Fuel Burner for Glass Melting;Iino;Nippon Sanso Engineering Report (in Japanese),1994

4. Flip-Flop Jet Nozzle;Viets;AIAA J.,1995

5. Gas-Solid Flow in a Fluidically Oscillating Jet;Morris;ASME J. Fluids Eng.,1992

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