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Comparative flame structure investigation of normal and inverse turbulent non-premixed oxy-fuel flames using experimentally recorded and numerically predicted Rayleigh and OH-PLIF signals

机译:使用实验记录和数值预测的瑞利和OH-pLIF信号对正常和反湍流非预混氧 - 燃料火焰进行比较火焰结构研究

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摘要

The structure and characteristics of a turbulent inverse and normal oxy-fuel diffusion flame are investigated. Previous investigations reported in the literature looked at flame characteristics of laminar inverse diffusion flames and their differences to normal diffusion flames. Only few investigations are reported for turbulent inverse diffusion flames and they did not compare the results to the corresponding normal configuration. The present study uses a combined experimental and numerical approach to compare and analyze a turbulent non-premixed inverse oxy-fuel and a corresponding normal flame, both are non-piloted. Measurements were conducted using simultaneously recorded planar Rayleigh scattering and OH-LIF signals. Due to the significant variation of the effective Rayleigh cross section in mixture fraction space and the unknown OH quenching contributions, a comparison of derived quantities such as temperature and OH mole fraction is not possible. Therefore, the Rayleigh and OH-LIF signals were incorporated in the LES flamelet/progress variable approach used here. This allows for a direct comparison of experimentally recorded and numerically predicted Rayleigh and OH-PLIF signals for the flame structure analysis, which includes the joint PDF of both quantities. The two flames are compared in terms of the local flame structure. In addition, differences in the mixing field and especially in the location of turbulent/non-turbulent interface are investigated.
机译:研究了湍流逆燃烧和普通含氧燃料扩散火焰的结构和特性。文献中报道的先前研究着眼于层状逆扩散火焰的火焰特性及其与正常扩散火焰的区别。对于湍流逆扩散火焰,只有很少的研究报道,并且没有将结果与相应的正常构型进行比较。本研究采用实验和数值相结合的方法来比较和分析湍流的非预混合逆向富氧燃料和相应的正常火焰,两者都是非引燃的。使用同时记录的平面瑞利散射和OH-LIF信号进行测量。由于混合物分数空间中有效瑞利横截面的显着变化以及未知的OH猝灭贡献,因此无法对衍生数量(例如温度和OH摩尔分数)进行比较。因此,瑞利和OH-LIF信号被合并到此处使用的LES火焰/进度变量方法中。这允许直接比较实验记录的和数值预测的瑞利和OH-PLIF信号,以进行火焰结构分析,其中包括两个量的联合PDF。比较两种火焰的局部火焰结构。另外,研究了混合场中的差异,尤其是湍流/非湍流界面的位置。

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