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Simultaneous measurements of temperature and soot volume fraction in turbulent diffusion flames

机译:同时测量湍流扩散火焰中的温度和烟尘体积分数

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摘要

Spatially resolved two-dimensional temperature and soot volume fractions were measured simultaneously in a turbulent non-premixed attached jet flame, using non-linear two-line atomic fluorescence (NTLAF) and laser induced incandescence (LII) techniques, respectively. Measurements were performed in a well characterised Ethylene-Hydrogen-Nitrogen jet flame in such a way as to avoid any significant interference of the two laser diagnostic techniques on each other. Laser ablation was used to seed Indium atoms into the flame for the temperature measurements. Sample images of single-shot simultaneous temperature and soot concentration images are presented at one location. Joint probability density functions (pdf’s) of soot volume fraction (SFV) as a function of temperature are also reported. The strong influence of temperature on SVF is found to be consistent with the current understanding and highlights the importance of the simultaneous measurements for understanding soot behaviour in a turbulent environment and for providing reliable data for soot model validation.
机译:分别使用非线性两线原子荧光(NTLAF)和激光诱导白炽(LII)技术,在湍流的非预混合附着射流火焰中同时测量空间分辨的二维温度和烟灰体积分数。在特征明确的乙烯-氢-氮喷射火焰中进行测量,以避免两种激光诊断技术之间的任何重大干扰。激光烧蚀用于将铟原子注入火焰中进行温度测量。一次同时显示温度和烟灰浓度图像的样本图像显示在一个位置。还报告了烟灰体积分数(SFV)的联合概率密度函数(pdf)与温度的关系。发现温度对SVF的强烈影响与当前的理解是一致的,并突出了同时进行测量对于理解湍流环境中的烟尘行为以及为烟尘模型验证提供可靠数据的重要性。

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