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SIDE AIR-JET MODULATION FOR CONTROL OF HEAT RELEASE AND PATTERN FACTOR

机译:侧面空气射流调制,用于控制发热量和模式因素

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The effect of a forced dilution air jet, introduced through the com-bustor shell, on the air/fuel mixing in the combustion chamber has been investigated. Thermocouple-based temperature measurements have been made at a number of forcing frequencies in the range 100-1100 Hz and blowing ratios in the range 10-15. Open-loop integral flame response to forcing has also been acquired by recording pressure and heat release spectra. A CH-radical imaging technique is used to provide spatially and temporally resolved information about the heat release behavior. The results exhibit that the mean temperature field inside the main reaction zone can be significantly altered as a consequence of air-jet modulation. The most significant effects are observed by forcing at vertical locations that are close to the dump plane. Enhancements in temperature of the order of 100-200℃ and reduction in pattern factor of the order of 40% were observed, with the lowest pattern factors achieved at the lowest forcing frequency of 100 Hz.
机译:已经研究了通过燃烧器壳体引入的强制稀释空气射流对燃烧室内空气/燃料混合的影响。基于热电偶的温度测量已在100-1100 Hz范围内的多个强制频率和10-15范围内的吹风比下进行。通过记录压力和放热谱图也已获得对强迫的开环积分火焰响应。 CH自由基成像技术用于提供有关放热行为的空间和时间解析信息。结果表明,由于喷气调制,主要反应区内的平均温度场可以显着改变。通过在靠近卸料平面的垂直位置施力,可以观察到最明显的影响。观察到温度升高了100-200℃,图案系数降低了40%左右,在最低强制频率100 Hz时,图案系数最低。

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