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Temperature measurement of a turbulent buoyant ethylene diffusion flame using a dual-thermocouple technique

机译:使用双热电偶技术测量湍流浮力乙烯扩散火焰的温度测量

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High-frequency temperature measurements were carefully conducted for a 15 kW buoyant turbulent ethylene diffusion flame over a 15.2 cm diameter gas burner with air co-flow. A dual-thermocouple probe, consisting of two fine-wire thermocouples with 25 ?m and 50 ?m wire diameters, was used to determine a compensated turbulent gas temperature. A sensitivity analysis shows that temperatures resolved using this dual-thermocouple technique are less sensitive to changes in thermocouple bead size, therefore, uncertainty is greatly reduced even when soot deposition on the thermocouple bead occurs in sooty flames. Mean and root-mean square (rms) fluctuations of gas temperature were recorded in a two-dimensional plane across the flame centerline. The mean gas temperature monotonically decreases away from the flame centerline at most flame heights, except for 1 diameter above the burner, where a temperature dip is observed. The rms temperature peaks shift from the edge of the flame to the center as the height increases. This is due to the enhanced mixing between fuel and air, which is further shown using probability density functions of the local gas temperature. A systematic temperature dataset with high spatial resolution is established for sooty flames, which is valuable for future soot and radiation model validation.
机译:在15.2cm直径的气体燃烧器上仔细地进行高频温度测量,以15 kW浮力湍流乙烯扩散火焰,其具有空气燃烧器的15.2cm直径的气体燃烧器。双热电偶探头,由两个细线热电偶组成,使用25Ωm和50Ω米直径,用于确定补偿的湍流气体温度。灵敏度分析表明,使用这种双热电偶技术解决的温度对热电偶珠粒尺寸的变化不太敏感,因此即使在热电偶胎圈上发生在烟雾的火焰中也大大降低了不确定性。将气体温度的平均值和均方根(RMS)波动被记录在火焰中心线的二维平面中。除了在燃烧器上方的1个直径之外,平均气体温度在大多数火焰高度之外单调地从火焰中心线减小,除了燃烧器上方的直径。随着高度的增加,RMS温度峰值从火焰边缘转移到中心。这是由于燃料和空气之间的增强混合,这进一步使用局部气体温度的概率密度函数进一步示出。为SOOTY火焰建立具有高空间分辨率的系统温度数据集,这对于未来的烟灰和辐射模型验证是有价值的。

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