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CO/NO_x EMISSIONS OF STRONGLY PULSED JET DIFFUSION FLAMES

机译:强脉冲喷气扩散火焰的CO / NOx排放

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The CO and NO_x emissions of strongly pulsed, turbulent diffusion flames were examined experimentally in a co-flow combustor. Video imaging was performed and time-averaged emissions were measured at the combustor exit and near the visible flame tip. Both the case of a fixed fuel injection velocity during the injection interval and a constant fuelling rate were studied for jet Reynolds numbers ranging from 5,000 to 15,000. For fixed injection velocity, maximum emission indices of CO occurred for compact, isolated flame puffs. CO decreased substantially with decreasing jet-off time as the flame puff interaction increased. The pulsed flames had lower NOx than the steady flames, particularly for the case of isolated flame structures. Similar trends in NO formation were seen for constant fueling rate. The CO emissions were, however, considerably different, largely due to a significant impact of the Reynolds number. Radial emissions profiles suggest an improved fuellair mixing for shorter jet-off times and longer jet-on times. The correlation of CO/NO emissions with a global flame residence time is discussed.
机译:在同流燃烧室中通过实验检查了强脉冲湍流扩散火焰的CO和NO_x排放。进行了视频成像,并在燃烧器出口和可见火焰尖端附近测量了时间平均排放量。对于喷射雷诺数范围为5,000至15,000的情况,都研究了在喷射间隔期间燃料喷射速度固定和燃料喷射速率恒定的情况。对于固定的喷射速度,紧凑,隔离的火焰抽吸会产生CO的最大排放指数。随着喷射时间的增加,CO随着喷射时间的减少而大大降低。脉冲火焰的NOx低于稳定火焰,特别是对于孤立的火焰结构。对于恒定的加油速率,可以看到类似的NO形成趋势。但是,CO排放量差异很大,这在很大程度上归因于雷诺数的重大影响。径向排放曲线表明,改进的油箱混合可以缩短喷射时间和延长喷射时间。讨论了CO / NO排放与整体火焰停留时间的相关性。

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