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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Effect of Fuel Nozzle Geometry on Swirling Partially Premixed Methane Flames
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Effect of Fuel Nozzle Geometry on Swirling Partially Premixed Methane Flames

机译:燃料喷嘴几何形状对旋流部分预混甲烷火焰的影响

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This paper presents an experimental study of the effect of fuel nozzle geometry on swirling partially premixed methane flames, where the focus is put on the ensuing flowfield and its role on coherent structures' suppression. The burner consists of a central interchangeable fuel nozzle surrounded by a swirling co-airflow where both discharge into a short mixing tube. The nozzle geometry is classified into two groups, namely, single- and multi-orifice nozzles. The swirling motion of the co-airflow is produced using a radial-type swirl generator with a swirl number of 1.15. The flowfield characteristics and coherent structures are documented using particle image velocimetry (PTV). Flame front dynamics are captured using Mie scattering technique. Quantitative laser sheet (QLS) is used to qualitatively shed light on the mixing characteristics downstream of the mixing tube exit, and laser Doppler velocimetry (LDV) is used to extract the coherent structures' peak frequency from the power spectra. The results revealed that the fuel nozzle geometry significantly affects the mean flowfield, mean, and root-mean-square (RMS) of the flame front location, flame front asymmetry, and coherent structures' amplitude. Higher spread rate and faster decay caused by single-orifice nozzles inside the mixing tube result in divergent flames with higher degree of flame front asymmetry downstream of the mixing tube exit. On the other hand, multi-orifice nozzles mitigate coherent structures, enhance mixing, and hence, promote the most appropriate conditions for coherent structures' suppression.
机译:本文提供了一个实验研究燃料喷嘴几何形状对涡旋的部分预混甲烷火焰的影响,其中重点放在随后的流场及其对相干结构抑制的作用上。燃烧器包括一个中央可互换燃料喷嘴,该喷嘴被涡流共同气流包围,两者都排放到短混合管中。喷嘴的几何形状分为两类,即单孔喷嘴和多孔喷嘴。辅助气流的回旋运动是使用一个回旋数为1.15的径向型回旋发生器产生的。使用粒子图像测速仪(PTV)记录了流场特征和相干结构。使用Mie散射技术捕获火焰前动态。定量激光片(QLS)用于定性地照射混合管出口下游的混合特性,激光多普勒测速仪(LDV)用于从功率谱中提取相干结构的峰值频率。结果表明,燃料喷嘴的几何形状显着影响火焰前部位置的平均流场,均值和均方根(RMS),火焰前部不对称性以及相干结构的振幅。混合管内部的单孔喷嘴引起的较高扩散率和较快的衰减会导致发散的火焰,且混合管出口下游的火焰前部不对称度更高。另一方面,多孔喷嘴减轻了相干结构,增强了混合,因此促进了抑制相干结构的最合适条件。

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