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Measurements of gas parameters in plasma-assisted supersonic combustion processes using diode laser spectroscopy

机译:使用二极管激光光谱法测量等离子体辅助超音速燃烧过程中的气体参数

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摘要

We report a procedure for temperature and water vapour concentration measurements in an unsteady-state combustion zone using diode laser absorption spectroscopy. The procedure involves measurements of the absorption spectrum of water molecules around 1.39 mu m. It has been used to determine hydrogen combustion parameters in M = 2 gas flows in the test section of a supersonic wind tunnel. The relatively high intensities of the absorption lines used have enabled direct absorption measurements. We describe a differential technique for measurements of transient absorption spectra, the procedure we used for primary data processing and approaches for determining the gas temperature and H2O concentration in the probed zone. The measured absorption spectra are fitted with spectra simulated using parameters from spectroscopic databases. The combustion-time-averaged (similar to 50 ms) gas temperature and water vapour partial pressure in the hot wake region are determined to be 1050 K and 21 Torr, respectively. The large signal-to-noise ratio in our measurements allowed us to assess the temporal behaviour of these parameters. The accuracy in our temperature measurements in the probed zone is similar to 40 K.
机译:我们报告了使用二极管激光吸收光谱在非稳态燃烧区进行温度和水蒸气浓度测量的程序。该程序涉及测量1.39微米左右的水分子的吸收光谱。它已用于确定超音速风洞测试段中M = 2气流中的氢气燃烧参数。所使用的吸收线的相对较高的强度使得能够进行直接吸收测量。我们描述了一种用于测量瞬态吸收光谱的差分技术,用于主要数据处理的过程以及用于确定探测区域中气体温度和H2O浓度的方法。测得的吸收光谱与使用光谱数据库中的参数模拟的光谱拟合。确定热尾流区域的平均燃烧时间(类似于50毫秒)气体温度和水蒸气分压分别为1050 K和21 Torr。测量中的大信噪比使我们能够评估这些参数的时间行为。我们在探测区域内的温度测量精度接近40K。

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