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Analysis of lean premixed turbulent combustion using coherent anti-Stokes Raman spectroscopy temperature measurements.

机译:使用相干反斯托克斯拉曼光谱温度测量分析稀薄的预混湍流燃烧。

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An existing CARS instrument was modified to use a new dual dye laser that produces simultaneously CARS spectra of N2, CO, CO2 and O2. These CARS spectra yield simultaneous values for the gas temperature from N2 and concentrations of CO, CO2 and O2. The dual-dye laser was generated using a mixture of pyromethene 650 and 597 dyes (both commercially available) dissolved in ethanol. Calibration studies in a tube furnace showed that the modified CARS instrument using the dual dye laser has good accuracy and acceptable precision for gas temperature measurements. However, the modified instrument had limited capabilities in measuring the concentrations of O2 and CO2 in the concentration ranges of interest, possibly due to the approximations involved in the CARS reduction algorithm used in this work.; The modified CARS instrument was successfully applied to obtain detailed measurements of instantaneous gas temperature for four lean premixed combustion conditions, with varying inlet stoichiometry and swirl level, in a Laboratory Scale Gas Turbine Combustor (LSGTC). The temperature data were used to produce iso-contour plots of averaged and normalized standard deviations. Probability Density Function (PDF) plots were also produced at several measurement locations.; Additional insights regarding the flame behavior were obtained by examining the spatial variation in the shape of the PDFs for all the combustion conditions. Several zones were identified in all four cases where the nature of the PDFs seems to be determined by different factors. At lower heights, near the bottom of the combustor, the swirl level seems to be the predominant factor determining the nature of the turbulent fluctuations, whereas near the wall and around z = 50 mm, the equivalence ratio appears to predominate. For the rest of the flame, the combined effect of the equivalence ratio and swirl level seems to determine the nature of the temperature fluctuations.; A preliminary analysis of combined LDA, PLIF and CARS data was presented for the most stable combustion case. The combined analysis made it possible to identify a potential zone of ignition, started by the mixing with the hot gases from both the central and the side recirculation zones.; Analysis of the gas temperature data has revealed new insights into the complex nature of the mixing and reaction processes that take place in lean premixed swirling flames. Comparison with LDA velocities and PLIF OH images suggests that the side recirculation zone may play an important role in the stabilization of the flame, along with the central recirculation zone. In addition, a flow reversal observed in the velocity components suggests the existence of eddies throughout the flame.
机译:对现有的CARS仪器进行了修改,以使用新的双染料激光器,该激光器同时生成N 2 ,CO,CO 2 和O 2 的CARS光谱。这些CARS光谱同时生成N 2 的气体温度以及CO,CO 2 和O 2 的浓度值。使用溶解在乙醇中的次甲基650和597染料(均可商购)产生双染料激光。在管式炉中进行的校准研究表明,使用双染料激光的改进型CARS仪器具有良好的精度,并且在气体温度测量中具有可接受的精度。但是,改进后的仪器在感兴趣的浓度范围内测量O 2 和CO 2 的能力有限,这可能是由于CARS减少算法所涉及的近似值用于这项工作。改进的CARS仪器已成功应用于实验室规模的燃气轮机燃烧器(LSGTC)中,通过改变进气化学计量和旋流水平,获得了四种稀薄预混燃烧条件下瞬时气体温度的详细测量值。温度数据用于生成平均和标准偏差的等值线图。在几个测量位置也产生了概率密度函数(PDF)图。通过检查所有燃烧条件下PDF形状的空间变化,可以获得有关火焰行为的其他见解。在所有四种情况下都确定了几个区域,其中PDF的性质似乎由不同的因素决定。在较低的高度,在燃烧室底部附近,旋涡水平似乎是决定湍流波动性质的主要因素,而在壁附近和z = 50 mm附近,当量比似乎占主导地位。对于火焰的其余部分,当量比和涡流水平的综合作用似乎决定了温度波动的性质。针对最稳定的燃烧情况,对LDA,PLIF和CARS数据的组合进行了初步分析。合并的分析使得有可能确定潜在的着火区域,首先将其与来自中央和侧面再循环区域的热气体混合。气体温度数据的分析揭示了对稀薄预混旋流火焰中混合和反应过程的复杂性质的新见解。与LDA速度和PLIF OH图像的比较表明,侧面再循环区以及中央再循环区可能在稳定火焰方面发挥重要作用。另外,在速度分量中观察到的流动逆转表明整个火焰中都存在涡流。

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