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Dynamic detection of species concentration and distribution in precombustion gases by laser spectroscopy of infrared absorption

机译:红外吸收激光光谱法动态检测预燃气体中的物种浓度和分布

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This paper describes the development of spectrum computation and analysis for a single model and untunable laser spectroscopy to detect the species concentration and space distribution in pre-combustion gases. Absorption spectroscopy using infrared laser diode provides a dynamic, non-instructive, and in situ way to determine the concentration and distribution of the mixture of fuel gas and O_2 in the pre-combustion gas stream. For species, wavelength suitable for absorption spectroscopy is determined using the spectra distributions of the species provided in HITRAN database. Inverse method and Abel algorithm are employed separately to retrieve the concentration of species and calculate the distribution of the measured gas. The results of the paper provide the foundation to develop a dynamic diagnostic instrument to monitor the state of gaseous species in hostile environments such as various industrial combustion systems.
机译:本文介绍了单一模型和不可调谐激光光谱技术的光谱计算和分析技术的发展,以检测预燃烧气体中的物质浓度和空间分布。使用红外激光二极管的吸收光谱法提供了一种动态的,非指导性的,原位的方法来确定预燃烧气流中燃料气体和O_2的混合物的浓度和分布。对于物种,使用HITRAN数据库中提供的物种的光谱分布来确定适合吸收光谱的波长。分别采用逆方法和Abel算法来检索物质的浓度并计算所测气体的分布。本文的结果为开发动态诊断仪器以监测恶劣环境(例如各种工业燃烧系统)中气态物质的状态奠定了基础。

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