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Two-dimensional tomography for gas concentration and temperature distributions based on tunable diode laser absorption spectroscopy

机译:基于可调谐二极管激光吸收光谱的气体浓度和温度分布的二维层析成像

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摘要

A tomography system is presented that uses wavelength-scanned direct absorption of two transitions of a target species (NH_(3) in the demonstration experiment) to determine the distributions of gas concentration and temperature. The absorption measurements are performed simultaneously from four platforms that each rotate a beam from a single laser through an 11 deg arc, acquiring a data set from all four laser platforms in 100 ms to enable observation of dynamic flow events. The laser is wavelength scanned through two absorption transitions with different internal energy producing two sets of equations with species mole fraction and temperature as independent variables. The mole fraction and temperature distributions are reconstructed using the algebraic reconstruction technique (ART) for this set of incomplete projections. A numerical simulation is used to evaluate the measurement accuracy for measurements of an NH_(3) mixture escaping from an open pipe. This phantom distribution is then realized in the laboratory and the measurement strategy is demonstrated using a tunable diode laser absorption spectroscopy (TDLAS) measurement using a single laser near 1.5 (mu)m to scan adjacent transitions in NH_(3). The reconstruction of NH_(3) concentration and gas temperature is compared with independently determined values to illustrate the fidelity of the tomographically reconstructed distributions for the NH_(3) mole fraction assuming a fixed temperature and for unknown mole fraction and temperature. Potential extensions of this research in the future include evaluation of other reconstruction algorithms and investigation of the dynamic distribution of various gases for combustion diagnostics.
机译:提出了一种层析成像系统,该系统使用波长扫描的目标物种的两个跃迁(示范实验中的NH_(3))的直接吸收来确定气体浓度和温度的分布。在四个平台上同时执行吸收测量,每个平台将来自单个激光器的光束旋转通过11度弧,在100毫秒内从所有四个激光器平台获取数据集,以观察动态流事件。通过具有不同内部能量的两个吸收跃迁对激光进行波长扫描,从而产生两组方程,其中物种摩尔分数和温度为自变量。对于这组不完整的投影,使用代数重建技术(ART)重建摩尔分数和温度分布。数值模拟用于评估从开口管逸出的NH_(3)混合物的测量精度。然后在实验室中实现这种幻影分布,并使用可调谐二极管激光吸收光谱(TDLAS)测量来演示测量策略,该测量使用接近1.5μm的单个激光器扫描NH_(3)中的相邻跃迁。将NH_(3)浓度和气体温度的重建与独立确定的值进行比较,以说明NH_(3)摩尔分数在固定温度下以及未知的摩尔分数和温度下的层析重建分布的逼真度。未来这项研究的潜在扩展包括评估其他重建算法,以及研究用于燃烧诊断的各种气体的动态分布。

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