Basic Study on the Generation of RF Plasmas in Premixed Oxy-combustion with Methane

Oxy-combustion generates a high temperature field (above 3000 K), which is applied to next generation power plants and high temperature industrial technologies because of N2 free processes. However, the combustion temperature is so high that the furnace wall may be fatally damaged. In addition, it i...

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Veröffentlicht in:Plasma and Fusion Research 2010/03/29, Vol.5, pp.010-010
Hauptverfasser: OSAKA, Yugo, KOBAYASHI, Noriyuki, RAZZAK, M. A., OHNO, Noriyasu, TAKAMURA, Shuichi, UESUGI, Yoshihiko
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Sprache:eng
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Zusammenfassung:Oxy-combustion generates a high temperature field (above 3000 K), which is applied to next generation power plants and high temperature industrial technologies because of N2 free processes. However, the combustion temperature is so high that the furnace wall may be fatally damaged. In addition, it is very difficult to control the heat flux and chemical species' concentrations because of rapid chemical reactions. We have developed a new method for controlling the flame by electromagnetic force on this field. In this paper, we experimentally investigated the power coupling between the premixed oxy-combustion with methane and radio frequency (RF) power through the induction coil. By optimizing the power coupling, we observed that the flame can absorb RF power up to 1.5 kW. Spectroscopic measurements also showed an increase in the emission intensity from OH radicals in the flame, indicating improved combustibility.
ISSN:1880-6821
1880-6821
DOI:10.1585/pfr.5.010