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首页> 外文期刊>EPJ Web of Conferences >Selection of the optimal combination of water vapor absorption lines for detection of temperature in combustion zones of mixing supersonic gas flows by diode laser absorption spectrometry
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Selection of the optimal combination of water vapor absorption lines for detection of temperature in combustion zones of mixing supersonic gas flows by diode laser absorption spectrometry

机译:通过二极管激光吸收光谱法选择最佳水蒸气吸收线组合以检测混合超声速气流燃烧区的温度

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Determination of a gas medium temperature by diode laser absorption spectrometry (DLAS) is based on the measurement of integral intensities of the absorption lines of a test molecule (generally water vapor molecule). In case of local thermodynamic equilibrium temperature is inferred from the ratio of the integral intensities of two lines with different low energy levels. For the total gas pressure above 1 atm the absorption lines are broadened and one cannot find isolated well resolved water vapor absorption lines within relatively narrow spectral interval of fast diode laser (DL) tuning range (about 3 cm?1). For diagnostics of a gas object in the case of high temperature and pressure DLAS technique can be realized with two diode lasers working in different spectral regions with strong absorption lines. In such situation the criteria of the optimal line selection differs significantly from the case of narrow lines. These criteria are discussed in our work. The software for selection the optimal spectral regions using the HITRAN-2012 and HITEMP data bases is developed. The program selects spectral regions of DL tuning, minimizing the error of temperature determination δТ/T, basing on the attainable experimental error of line intensity measurement δS. Two combinations of optimal spectral regions were selected – (1.392 & 1.343 μm) and (1.392 & 1.339 μm). Different algorithms of experimental data processing are discussed.
机译:通过二极管激光吸收光谱法(DLAS)确定气体介质的温度是基于测试分子(通常是水蒸气分子)的吸收线的积分强度的测量。在局部热力学平衡的情况下,温度由低能级不同的两条线的积分强度之比得出。对于总气压高于1 atm的气体,吸收线变宽,并且在快速二极管激光器(DL)调谐范围相对较窄的光谱区间(约3 cm-1)内找不到孤立的分辨良好的水蒸气吸收线。对于高温高压气体的诊断,可以使用两个二极管激光器在强吸收线的不同光谱范围内工作,实现DLAS技术。在这种情况下,最佳线选择的标准与窄线的情况显着不同。在我们的工作中讨论了这些标准。开发了使用HITRAN-2012和HITEMP数据库选择最佳光谱区域的软件。该程序基于可达到的线强度测量实验误差δS来选择DL调谐的光谱区域,从而将温度确定误差δТ/ T最小化。选择了最佳光谱区域的两种组合–(1.392&1.343μm)和(1.392&1.339μm)。讨论了实验数据处理的不同算法。

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