首页> 外文会议>International Symposium on Combustion; 20040725-30; Chicago,IL(US) >The stabilization mechanism and structure of turbulent hydrocarbon lifted flames
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The stabilization mechanism and structure of turbulent hydrocarbon lifted flames

机译:湍流烃举火焰的稳定机理与结构

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The structure and stabilization mechanism of turbulent lifted non-premixed hydrocarbon flames have been investigated using combined laser imaging techniques. The techniques include Rayleigh scattering, laser induced predissociation fluorescence of OH, LIF of PAH, LIF of CH_2O, and planar imaging veloc-imetry. The geometrical structure of multi-reaction zones and flow field at the stabilization region have been simultaneously measured in 16 hydrocarbon flames. The data reveal the existence of triple flame structure at the stabilization region of turbulent lifted flames. Increasing the jet velocity leads to an increase of the lift-off height and to a broadening of the lift-off region. Further analysis of the stabilization criterion at the lift-off height based on the premixed nature of triple-flame propagation and flow field data has been presented and discussed.
机译:利用组合激光成像技术研究了湍流抬升的非预混烃火焰的结构和稳定机理。这些技术包括瑞利散射,OH的激光诱导的预离解荧光,PAH的LIF,CH_2O的LIF以及平面成像测速。在16个碳氢化合物火焰中同时测量了多反应区的几何结构和稳定区域的流场。数据揭示了在湍流举升火焰的稳定区域存在三重火焰结构。射流速度的增加导致提离高度的增加和提离区域的扩大。提出并讨论了基于三重火焰传播和流场数据的预混合特性对提离高度处的稳定标准进行的进一步分析。

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