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Rotational CARS for simultaneous measurementsof temperature and concentrations of N2, O2, CO,and CO2 demonstrated in a CO/air diffusion flame

机译:用于同时测量的旋转汽车,在CO /空气扩散火焰中表现出N2,O2,CO和CO2的温度和浓度

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Rotational coherent anti-Stokes Raman spectroscopy (CARS) has over the years demonstrated its strong potential to measure temperature and relative concentrations of major species in combustion. A recent work is the development and experimental validation of a CO2 model for thermometry, in addition to our previous rotational CARS models for other molecules. In the present work, additional calibration measurements for relative CO2/N2 concentrations have been made in the temperature range 294–1246 K in standardized CO2/N2 mixtures. Following these calibration measurements, rotational CARS measurements were performed in a laminar CO/air diffusion flame stabilized on a Wolfhard–Parker burner. High-quality spectra were recorded from the fuel-rich region to the surrounding hot air in a lateral cross section of the flame. The spectra were evaluated to obtain simultaneous profiles of temperature and concentrations of all major species; N2, O2, CO, and CO2. The potential for rotational CARS as a multi-species detection technique is discussed in relation to corresponding strategies for vibrational CARS.
机译:旋转相干反斯托克斯拉曼光谱(汽车)多年来证明了其强烈的燃烧燃烧温度和相对浓度的强大潜力。最近的工作是除了我们以前的其他分子的旋转汽车模型之外,还为温度测量的CO2模型的开发和实验验证。在本作工作中,已经在标准化CO 2 / N 2混合物中的温度范围294-1246k中进行了相对CO2 / N2浓度的额外校准测量。在这些校准测量之后,在沃尔维尔帕克燃烧器上稳定的层流/空气扩散火焰中进行旋转汽车测量。在火焰的横向横截面中,从富含燃料的区域记录高质量的光谱。评价光谱以获得所有主要物种的温度和浓度的同时谱; N2,O2,CO和CO2。旋转汽车作为多物种检测技术的可能性是关于振动车的相应策略讨论的。

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