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Spontaneous anti-Stokes Raman probe for gas temperature measurements in industrial furnaces

机译:自发抗斯托克斯拉曼探针,用于测量工业炉中的气体温度

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摘要

A compact, pulsed Nd:YAG laser-based instrument has been built to measure in situ absolute gas temperatures in large industrial furnaces by use of spontaneous anti-Stokes Raman scattering. The backscattering configuration was used to simplify the optics alignment and increase signal-to-noise ratios. Gated signal detection significantly reduced the background emission that is found in combustion environments. The anti-Stokes instead of the Stokes component was used to eliminate contributions to spectra from cold atmospheric nitrogen. The system was evaluated in a methane/air flame and in a bench-top oven, and the technique was found to be a reliable tool for nonintrusive absolute temperature measurements with relatively clean gas streams. A water-cooled insertion probe was integrated with the Raman system for measurement of the temperature profiles inside an industrial furnace. Gas temperatures near 1500-1800 K at atmospheric pressure in an industrial furnace were inferred by fitting calculated profiles to experimental spectra with a standard deviation of less than 1% for averaging times of ~200 s. The temperatures inferred from Raman spectra are in good agreement with data recorded with a thermocouple probe.
机译:已经建立了一种紧凑的,基于脉冲Nd:YAG激光的仪器,可以通过使用自发的反斯托克斯拉曼散射技术在大型工业炉中现场测量绝对气体温度。反向散射配置用于简化光学对准并增加信噪比。门控信号检测大大降低了燃烧环境中的背景辐射。用反斯托克斯代替斯托克斯分量消除了来自冷大气氮对光谱的影响。在甲烷/空气火焰和台式烤箱中对该系统进行了评估,发现该技术是使用较干净的气流进行非侵入式绝对温度测量的可靠工具。水冷插入式探头与拉曼系统集成在一起,用于测量工业炉内的温度曲线。通过将计算出的曲线拟合到实验光谱中,在平均压力约为200 s的条件下,将计算得出的曲线拟合到标准偏差小于1%的情况下,可以推断出工业炉中大气压下接近1500-1800 K的气体温度。从拉曼光谱推断出的温度与热电偶探头记录的数据非常吻合。

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