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Thermometry of an open spatially inhomogeneous flame by diode laser absorption spectroscopy

机译:二极管激光吸收光谱的开口空间不均匀火焰的温度测量

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摘要

Features of a single-beam variant of diode laser absorption spectroscopy (DLAS) used for temperature measurements in a spatially inhomogeneous hot zone are studied. A flame temperature of a commercial burner is measured by using water molecule absorption lines. The flame is probed by a diode laser radiation at various heights and in various directions. The correctness of DLAS measurement results is verified by comparing DLAS data with temperatures measured by the method of coherent anti-Stokes scattering (CARS). It is shown that in homogeneous flame domains the temperatures obtained by both the methods coincide. Temperature inhomogeneity along the probe beam direction is a principal problem of DLAS, in which case the method yields information about some effective temperature along the light trace. The difference in data obtained by DLAS and CARS is estimated. In probing traces with temperature gradients the difference reaches 700 K. Possibilities of accounting for temperature inhomogeneities along the trace in DLAS measurements are discussed. A method of differential spectra is suggested, which in certain conditions can provide substantially better coincidence of results for the two methods.
机译:研究了用于在空间不均匀热区中用于温度测量的二极管激光吸收光谱(DLA)的单梁变体的特征。通过使用水分子吸收管线测量商业燃烧器的火焰温度。通过各种高度和各种方向上的二极管激光辐射探测火焰。通过将DLA数据与通过相干反斯托克散射(汽车)的方法测量的温度进行比较来验证DLA测量结果的正确性。结果表明,在均匀的火焰域中通过两种方法得到的温度一致。沿探针方向的温度不均匀性是DLA的主要问题,在这种情况下,该方法沿着光迹线产生关于一些有效温度的信息。估计DLA和汽车获得的数据的差异。在具有温度梯度的探测迹线中,讨论了差异达到700k.沿着DLA测量中的迹线核对温度不均匀的可能性。提出了一种差分光谱的方法,在某些条件下可以提供两种方法的结果的基本更好的重合。

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