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Broadband fitting approach for the application of supercontinuum broadband laser absorption spectroscopy to combustion environments

机译:超连续谱宽带激光吸收光谱在燃烧环境中的宽带拟合方法

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摘要

In this work, a novel broadband fitting approach for quantitative in-flame measurements using supercontinuum broadband laser absorption spectroscopy (SCLAS) is presented. The application and verification of this approach in an atmospheric, laminar, non-premixed CH4/air flame (Wolfhard-Parker burner, WHP) is discussed. The developed fitting scheme allows for an automatic recognition and fitting of a B-spline curve reference intensity for SCLAS broadband measurements while automatically removing the influence of absorption peaks. This approach improves the fitting residual locally (in between absorption lines) and globally by 23% and 13% respectively, while improving the in-flame SNR by a factor of 2. Additionally, the approach inherently improves the time-wavelength-correlation based on recorded in-flame measurements itself in combination with a theoretical spectrum of the analyte. These improvements have allowed for the recording of complete spatially resolved methane concentration profiles in the WHP burner. Comparison of the measured absolute mole fraction profile for methane with previously measured reference data shows excellent agreement in position, shape and absolute values. These improvements are a prerequisite for the application of SCLAS in high-pressure combustion systems.
机译:在这项工作中,提出了一种使用超连续谱宽带激光吸收光谱法(SCLAS)进行火焰定量测量的新型宽带拟合方法。讨论了这种方法在大气层流非预混合CH4 /空气火焰(Wolfhard-Parker燃烧器,WHP)中的应用和验证。所开发的拟合方案可自动识别和拟合B样条曲线参考强度以进行SCLAS宽带测量,同时自动消除吸收峰的影响。该方法将局部(在吸收线之间)和整体的拟合残差分别提高了23%和13%,同时将火焰中的SNR改善了2倍。此外,该方法还固有地改善了基于记录火焰测量值本身并结合分析物的理论光谱。这些改进允许在WHP燃烧器中记录完整的空间分辨的甲烷浓度曲线。甲烷的测得的绝对摩尔分数分布与先前测得的参考数据的比较表明,位置,形状和绝对值具有极好的一致性。这些改进是SCLAS在高压燃烧系统中应用的前提。

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