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Effects of nozzle length on flame and emission behaviors of multi-fuel-jet inverse diffusion flame burner

机译:喷嘴长度对多燃料逆扩散火焰燃烧器火焰和排放行为的影响

摘要

An experimental study was performed to investigate the effects of the nozzle length on the air-pollutant-emission and noise-radiation behaviors of a burner utilizing a multi-fuel-jet inverse diffusion flame (MIDF). Comparison of the experimental results obtained from two MIDF burners, one with a long nozzle and the other with a short nozzle, operating under the same air/fuel supply conditions (Re air and F{cyrillic}) shows rather significant differences in the flame appearance, flame centerline temperature, CO/CO 2 concentrations and the noise radiation. The nozzle length influences development of the jets and hence interaction between the air/fuel jets including their mixing process. The short nozzle produces a flame with a shorter base height and a smaller potential core due to the enhanced air/fuel mixing. It also leads to faster and more complete combustion at the inner reaction cone of the flame due to the stronger and faster air/fuel mixing. The nozzle length affects the CO and CO 2 concentrations, and higher peak values are obtained with the short-nozzle flame. Flame noise of the MIDF is defined as the noise radiation at different flame heights, which is of varying strength but of the same dominant frequency in the range of 250-700Hz. The noise radiation from the inner reaction cone of the flame is stronger than that from the lower and upper parts of the flame, and the maximum noise radiation occurs when the total amounts of air and fuel in the combustion zone are at the stoichiometric air/fuel ratio. For all the experiments conducted in the present study, the MIDF produced by the long nozzle is always noisier than its counterpart and it is due to the increase of the low-frequency noise components.
机译:进行了一项实验研究,以研究喷嘴长度对使用多燃料喷射逆扩散火焰(MIDF)的燃烧器的空气污染物排放和噪声辐射行为的影响。比较从两个MIDF燃烧器获得的实验结果,一个是长喷嘴,另一个是短喷嘴,它们在相同的空气/燃料供应条件(Re air和F {cyrillic})下运行,显示出明显的火焰差异,火焰中心线温度,CO / CO 2浓度和噪声辐射。喷嘴长度影响射流的发展,并因此影响空气/燃料射流之间的相互作用,包括其混合过程。由于增强的空气/燃料混合,短喷嘴产生的火焰具有更短的基础高度和更小的潜在芯。由于更强和更快的空气/燃料混合,它还导致在火焰的内部反应锥处更快更完全的燃烧。喷嘴长度会影响CO和CO 2浓度,短喷嘴火焰会获得更高的峰值。 MIDF的火焰噪声定义为在不同火焰高度处的噪声辐射,该火焰辐射强度不同,但主频率在250-700Hz范围内相同。来自火焰内部反应锥的噪声辐射比来自火焰下部和上部的噪声辐射强,并且当燃烧区内的空气和燃料总量为化学计量的空气/燃料时,会出现最大的噪声辐射。比。对于本研究中进行的所有实验,由长喷嘴产生的MIDF总是比其对应的噪声更大,这是由于低频噪声分量的增加。

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