Flame Stability and NOx Formation by Micro scale Turbulence

마이크로 스케일 난류에 의한 화염안정성 및 NOx 생성

  • 김인수 (포스코 환경에너지부) ;
  • 서정무 (경북대학교 대학원) ;
  • 이근선 (구미1대학 컴퓨터응용기계설계과) ;
  • 이충원 (경북대학교 기계공학부)
  • Published : 2001.11.16

Abstract

The effect of micro scale turbulence on flame structure and stability were experimentally investigated by changing the area of micro turbulence generator(MTG) and air velocity in terms of low NOx and high efficiency combustion. NOx and CO concentration were also measured for different MTG areas to investigate whether a vane swirler having MTG has a possibility of using as part for low NOx combustor. From the obtained results, it is shown that flame stability region increases and flame size becomes small as MTG area increases since MTG in itself makes small scale recirculation flow and swirler does large scale recirculation one. It is also shown that low NOx concentration(about 20${\sim}$30ppm@$O_2$ 11%) is achieved for all MTG areas without any increase in CO concentration regardless of air velocity range tested in this study when the equivalence ratio is 0.7. The results obtained in this study can give basic guideline for the design of compact low NOx high efficiency combustor using a vane swirler having MTG.

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