Tonarely Michael E, Genova Tommy, Morales Anthony J, Micka Daniel, Knaus Darin, Ahmed Kareem A
Department of Mechanical and Aerospace Engineering, University of Central Florida, Orlando, FL 32816, USA.
Creare LLC, Hanover, NH 03755, USA.
Sensors (Basel). 2022 Jul 28;22(15):5665. doi: 10.3390/s22155665.
In the present work, an optical sensor was developed and calibrated for the purpose of non-intrusive equivalence ratio measurements in combustion systems. The sensor incorporates a unique four-line, single-sensor chemiluminescence imaging-based approach, which relies on the ratio of C* and CH* radical-species intensities to obtain measurements of equivalence ratios. The advantage of the four-line sensor is the use of additional filtering to mitigate broadband luminescence signals, and its improvements over conventional two-line chemiluminescence diagnostics are discussed. The sensor was calibrated using a premixed bluff-body jet burner with a propane-air flame operating over a wide range of equivalence ratios. The results showed that the four-line processing technique improved the signal-to-noise ratio of the chemiluminescence images for all test cases. Calibrations of C*/CH* intensity ratio to equivalence ratio were developed for both the four-line and two-line techniques. The calibrations were then used to create maps of local equivalence ratios in the flame-holding region. The maps revealed a non-uniform field of equivalence ratios due to the nature of the radical-species intensity profiles within the flame. Therefore, special consideration is required for calibration in order to accurately quantify equivalence ratios and apply these to diffusion flames.
在本研究中,为了在燃烧系统中进行非侵入式当量比测量,开发并校准了一种光学传感器。该传感器采用了独特的基于四线单传感器化学发光成像的方法,该方法依靠C和CH自由基物种强度的比值来获取当量比的测量值。四线传感器的优点是使用了额外的滤波来减轻宽带发光信号,并讨论了其相对于传统两线化学发光诊断方法的改进。使用预混钝体射流燃烧器对该传感器进行校准,该燃烧器带有丙烷 - 空气火焰,在很宽的当量比范围内运行。结果表明,四线处理技术在所有测试案例中都提高了化学发光图像的信噪比。针对四线和两线技术都建立了C*/CH*强度比与当量比的校准关系。然后使用这些校准关系来创建火焰稳定区域内局部当量比的分布图。这些分布图显示,由于火焰内自由基物种强度分布的特性,当量比场并不均匀。因此,为了准确量化当量比并将其应用于扩散火焰,校准需要特别考虑。