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High-resolution imaging of turbulence structures in jet flames and non-reacting jets with laser Rayleigh scattering

机译:用激光瑞利散射对喷气火焰和非反应喷气中的湍流结构进行高分辨率成像

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A comparative study of the length scales and morphology of dissipation fields in turbulent jet flames and non-reacting jets provides a quantitative analysis of the effects of heat release on the fine-scale structure of turbulent mixing. Planar laser Rayleigh scattering is used for highly resolved measurements of the thermal and scalar dissipation in the near fields of CH4/H2/N2 jet flames (Re d = 15,200 and 22,800) and non-reacting propane jets (Re d = 7,200–21,700), respectively. Heat release increases the dissipation cutoff length scales in the reaction zone of the flames such that they are significantly larger than the cutoff scales of non-reacting jets with comparable jet exit Reynolds numbers. Fine-scale anisotropy is enhanced in the reaction zone. At x/d = 10, the peaks of the dissipation angle PDFs in the Re d = 15,200 and 22,800 jet flames exceed those of non-reacting jets with corresponding jet exit Reynolds numbers by factors of 2.3 and 1.8, respectively. Heat release significantly reduces the dissipation layer curvature in the reaction zone and in the low-temperature periphery of the jet flames. These results suggest that the reaction zone shields the outer regions of the jet flame from the highly turbulent flow closer to the jet axis.
机译:对湍流射流火焰和非反应射流的耗散场的长度尺度和形态的比较研究,提供了热量释放对湍流混合细尺度结构影响的定量分析。平面激光瑞利散射用于CH 4 / H 2 / N 2 的近场中的热和标量耗散的高分辨率测量喷射火焰(Re d = 15,200和22,800)和未反应的丙烷喷射(Re d = 7,200–21,700)。放热增加了火焰反应区域中的耗散截止长度尺度,从而使它们显着大于具有可比的射流出口雷诺数的非反应射流的截止尺度。在反应区中,细尺度的各向异性得以增强。在x / d = 10时,在Re d = 15,200和22,800的喷射火焰中,消散角PDFs的峰值比具有相应喷嘴出口雷诺数的非反应喷射的峰值高2.3和1.8倍。 , 分别。放热显着降低了反应区和喷射火焰的低温周边中的耗散层曲率。这些结果表明,反应区将喷射火焰的外部区域与更靠近喷射轴线的高度湍流隔开。

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