Pelzmann Tanja, Robert Étienne
Multiphase and Reactive Flows Laboratory, Polytechnique Montréal, Mechanical Engineering department, 2900 Boulevard Edouard-Monpetit local J-5067, Montreal (Québec) H3T1J4, Canada.
Data Brief. 2022 May 20;42:108281. doi: 10.1016/j.dib.2022.108281. eCollection 2022 Jun.
To enable the use of flat flame burners in the context of fire resistance testing, we present a data set covering temperature, infrared emission and heat 15 mm above the burner. A laminar premixed methane-air flame is characterized for eleven different fuel/air ratios, ranging from lean (0.9) to rich (1.45), extending an existing a widely used reference [1]. We provide complementing flame temperature readings from thermocouple measurements that can be used for calibration. In addition, broadband flame optical emissions are acquired in the visual (VIS) and the infrared (IR) spectral region. Chemiluminescence measurements reveal the spatial distribution of the OH* radicals. Heat flux density measurements with a water-cooled gauge are also provided. Finally, the expected species concentration, velocity, temperature are obtained from chemical kinetics calculations. Ambient conditions and burner control parameters are presented as supplementary data.
为了能够在耐火测试中使用扁平火焰燃烧器,我们给出了一组涵盖燃烧器上方15毫米处温度、红外发射和热的数据。对层流预混甲烷-空气火焰在从贫燃(0.9)到富燃(1.45)的11种不同燃料/空气比下进行了表征,扩展了现有的广泛使用的参考文献[1]。我们提供了可用于校准的热电偶测量补充火焰温度读数。此外,在可见光(VIS)和红外(IR)光谱区域采集了宽带火焰光发射。化学发光测量揭示了OH*自由基的空间分布。还提供了用水冷式测量仪进行的热通量密度测量。最后,通过化学动力学计算获得了预期的物种浓度、速度和温度。环境条件和燃烧器控制参数作为补充数据给出。