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ON THE ACCURACY OF TEMPERATURE MEASUREMENTS IN TURBULENT JET DIFFUSION FLAMES BY COHERENT ANTI-STOKES-RAMAN SPECTROSCOPY

机译:相干抗斯托克斯拉曼光谱法研究湍流射流扩散火焰温度测量的准确性

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摘要

Coherent anti-Stokes-Raman spectroscopy (CARS) has been applied to determine profiles of mean and standard deviation of temperature and of probability density functions for the Delft turbulent jet diffusion flames fed with Dutch natural gas. Several improvements to the CARS data reduction are introduced and special attention is paid to the effect of spatial averaging. It is shown that the error due to the limited resolution is at most 40 K for mean temperatures around 750 K. The CARS results are compared to the Raman-Rayleigh results obtained earlier for the same flames. Within experimental uncertainty, the results from the two independent nonintrusive laser diagnostic techniques are the same, except for the low central part of the flames. The difference can be a consequence of the occurrence of large methane concentrations and of the sensitive dependence on upstream boundary conditions.
机译:相干反斯托克斯拉曼光谱法(CARS)已用于确定以荷兰天然气为燃料的代尔夫特湍流射流扩散火焰的温度平均值和标准偏差以及概率密度函数的轮廓。介绍了对CARS数据缩减的一些改进,并特别注意了空间平均的效果。结果表明,由于分辨率受限而导致的误差在750 K左右的平均温度下最多为40K。将CARS结果与之前针对相同火焰获得的Raman-Rayleigh结果进行比较。在实验不确定性范围内,除了火焰中心位置较低之外,两种独立的非侵入式激光诊断技术的结果均相同。差异可能是由于甲烷浓度高和对上游边界条件的敏感依赖所致。

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