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Determination of the Maximum Temperature in a Non-Uniform Hot Zone by Line-of-Site Absorption Spectroscopy with a Single Diode Laser

机译:用单二极管激光器的场线吸收光谱法确定非均匀热区的最高温度

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摘要

A new algorithm for the estimation of the maximum temperature in a non-uniform hot zone by a sensor based on absorption spectrometry with a diode laser is developed. The algorithm is based on the fitting of the absorption spectrum with a test molecule in a non-uniform zone by linear combination of two single temperature spectra simulated using spectroscopic databases. The proposed algorithm allows one to better estimate the maximum temperature of a non-uniform zone and can be useful if only the maximum temperature rather than a precise temperature profile is of primary interest. The efficiency and specificity of the algorithm are demonstrated in numerical experiments and experimentally proven using an optical cell with two sections. Temperatures and water vapor concentrations could be independently regulated in both sections. The best fitting was found using a correlation technique. A distributed feedback (DFB) diode laser in the spectral range around 1.343 µm was used in the experiments. Because of the significant differences between the temperature dependences of the experimental and theoretical absorption spectra in the temperature range 300–1200 K, a database was constructed using experimentally detected single temperature spectra. Using the developed algorithm the maximum temperature in the two-section cell was estimated with accuracy better than 30 K.
机译:提出了一种新的算法,该算法通过基于二极管激光器吸收光谱的传感器估算非均匀热区中的最高温度。该算法基于使用光谱数据库模拟的两个单一温度光谱的线性组合,将吸收光谱与非均匀区域中的测试分子拟合。所提出的算法允许人们更好地估计不均匀区域的最高温度,并且如果仅主要关注最高温度而不是精确的温度曲线,则该算法很有用。该算法的效率和特异性在数值实验中得到了证明,并通过使用具有两个截面的光学单元进行了实验证明。温度和水蒸气浓度可在两个部分中独立调节。使用相关技术可以找到最佳拟合。实验中使用了光谱范围约为1.343 µm的分布式反馈(DFB)二极管激光器。由于在300–1200 K的温度范围内,实验吸收光谱和理论吸收光谱的温度依赖性之间存在显着差异,因此使用实验检测到的单个温度光谱构建了数据库。使用开发的算法,估计两节电池中的最高温度的准确性优于30K。

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