首页> 外文期刊>Combustion Science and Technology >INVESTIGATIVE METHOD FOR RADIATIVE PROPERTIES OF WATER VAPOR IN THE 0.8 μM REGION BY OPTICAL DIAGNOSTIC OF H_2-AIR COMBUSTION
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INVESTIGATIVE METHOD FOR RADIATIVE PROPERTIES OF WATER VAPOR IN THE 0.8 μM REGION BY OPTICAL DIAGNOSTIC OF H_2-AIR COMBUSTION

机译:H_2-空气燃烧的光学诊断方法研究0.8μM区域水蒸气的辐射特性

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摘要

To contribute to the development of more competitive combustors by the command of heat exchanges, the determination of temperature and concentration distributions of combustion products is required. Emission spec-troscopy of gas species has been investigated for passive and nonintrusive measurements in combustion processes under severe conditions (T > 2000 K and P > 10 bar). We have designed an experimental facility to study radiative properties of water vapor produced during combustion of a reactive H_2-air mixture for different initial conditions. The enclosure is efficient and dynamic pressures up to 80 bar were recorded with a good reproducibility. Emission measurements of H_2O were performed in the 0.8 μm band using a high resolution spectrometer and a CCD detector. These spectra are compared to simulations with the HITEMP database. In the measurement spectral range, extrapolations from the spectroscopic database gave similar results to our initial experimental ones.
机译:为了通过热交换的命令促进更具竞争力的燃烧器的发展,需要确定燃烧产物的温度和浓度分布。在严酷条件下(T> 2000 K和P> 10 bar),已对燃烧过程中的气体种类的发射光谱进行了被动和非侵入式测量。我们设计了一个实验设施,以研究在不同初始条件下反应性H_2-空气混合物燃烧过程中产生的水蒸气的辐射特性。外壳效率高,记录的动态压力高达80 bar,再现性良好。使用高分辨率光谱仪和CCD检测器在0.8μm波段内进行H_2O的发射测量。将这些光谱与HITEMP数据库的模拟进行比较。在测量光谱范围内,光谱数据库的外推结果与我们最初的实验结果相似。

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