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메탄/공기 화염에서 연소실 압력변동이 연소특성과 국소 반응강도에 미치는 영향
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  • 메탄/공기 화염에서 연소실 압력변동이 연소특성과 국소 반응강도에 미치는 영향
저자명
김종률,최경민,김덕줄,Kim. Jong-Ryul,Choi. Gyung-Min,Kim. Duck-Jool
간행물명
大韓機械學會論文集. Transactions of the Korean society of mechanical engineers. B. B
권/호정보
2009년|33권 5호|pp.365-372 (8 pages)
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

The influence of combustor pressure on the local reaction characteristics of $CH_4$/air flames was investigated by measurements of local chemiluminescence intensity. Induced flow flames are often applied to the industrial boiler systems and incinerator in order to improve heat transfer and prevent exhaust gas leakage. In order to investigate combustion characteristics in the induced flow pattern, the combustor pressure index($P^*$) was controlled in the range of $0.7{sim}1.3$ for each equivalence ratio in the present combustion system, where $P^*$ is defined as the ratio of absolute pressure to atmospheric one. Relationship between local reaction intensity and pressure index have been investigated by simultaneous $CH^*$, $C^*_2$ and $OH^*$ intensity measurements. It could be observed that flame length became longer with decreasing $P^*$ from $CH^*$ chemiluminescence intensity of axial direction. The mean value of $C^*_2$ and $CH^*$ chemiluminescence intensities, which indicates reaction intensity in the $CH_4$/air flames, decreased with decreasing pressure index for ${Phi}{leq}1$, but increased with decreasing pressure index for ${Phi}$>1. $C^*_2/CH^*$ intensity ratio, which can be a good marker to demonstrate local equivalence ratio, was almost same for ${Phi}{leq}1$ regardless of pressure index change, while they showed high level for lower pressure index for ${Phi}$>1 conditions.