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Effects of high shear on the structure and thickness of turbulent premixed methane/air flames stabilized on a bluff body burner

机译:高剪切对湍流预混甲烷/空气火焰结构和厚度的影响

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The effects of preferential transport and strain on the scalar structure (profiles of major species, elemental ratios, and equivalence ratio) of turbulent premixed bluff-body stabilized flames are examined using line-imaged Raman/Rayleigh/CO-LIF diagnostics combined with crossed-planar Rayleigh imaging to determine the 3D flame orientation. Comparison of the experimental measurements with laminar flow calculations shows strong effects of preferential diffusion on the flame structure and the product state in lean and rich flames. Measurements of the flame orientation show a strong correlation between the flame-front normal angle and the strength of the preferential transport effects. As the flame-front angle decreases (that is increasing the reactant velocity, or decreasing the distance from the surface), the coupling between the preferential diffusion through the flame brush and the recirculation region is increased, enhancing the preferential transport effects. Flame thickness measurements show good agreement (within 3%) with the laminar calculation for fuel lean flames, and 'slow' (2.0 m/s reactant velocity) fuel rich flames. The measured thickness for the 'fast' (9.4 m/s reactant velocity') fuel rich case is 2.4 times larger than the predicted value at 10 mm from the surface and shows a strong dependence on the flame normal angle.
机译:优先转运和应变对标量结构的影响的(主要种类,元素比,和当量比的配置文件)湍流预混非流线形体火焰稳定使用线成像的拉曼/瑞利/ CO-LIF诊断与crossed-组合检查平面瑞利成像确定3D火焰取向。实验测量与层流的计算显示了火焰结构选择性扩散和贫和富的火焰的产品状态的强烈影响的比较。火焰取向的测量表明火焰前正常角和的优先转运效应的强度之间的强相关性。由于火焰前角减小(即增加反应速度,或减少从该表面的距离),通过火焰刷和再循环区域选择性扩散之间的耦合增加时,提高了优先转运的影响。火焰厚度测量显示与层流计算燃料稀薄的火焰(在3%以内)良好的一致性,和“慢”(2.0米/秒反应物速度)富燃料火焰。为“快”测得的厚度(9.4米/秒反应物速度')富燃料的情况下是比预测值在离表面并示出了在火焰正常角度有很强的依赖性10毫米大2.4倍。

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