Seitzman J M, Haumann J, Hanson R K
Appl Opt. 1987 Jul 15;26(14):2892-9. doi: 10.1364/AO.26.002892.
Two-dimensional imaging of CO concentration in combustion gases is demonstrated using two-photonexcited planar laser-induced fluorescence. A quantitative model is presented for the simultaneous twophoton excitation of several rotational transitions of the B(1)Sigma(+) ? X(1)Sigma(+) system and the subsequent visible fluorescence (B(1)Sigma(+) ? A(1)Pi). The model is verified by comparison of predicted and measured excitation spectra and of temperature-corrected relative fluorescence measurements to standard probe measurements of the center line CO distribution in a CO-air diffusion flame. In addition, CO imaging experiments in a premixed methane-air flame indicate the production of C(2) by laser photodissociation of acetylene.
利用双光子激发平面激光诱导荧光技术展示了燃烧气体中一氧化碳浓度的二维成像。提出了一个定量模型,用于同时双光子激发B(1)Σ⁺←X(1)Σ⁺体系的几个转动跃迁以及随后的可见荧光(B(1)Σ⁺←A(1)Π)。通过比较预测的和测量的激发光谱,以及将温度校正后的相对荧光测量结果与一氧化碳 - 空气扩散火焰中心线一氧化碳分布的标准探针测量结果进行比较,对该模型进行了验证。此外,在预混甲烷 - 空气火焰中进行的一氧化碳成像实验表明,乙炔经激光光解产生了C₂ 。