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LIFTING AND SPLITTING OF NONPREMIXED METHANE/ AIR FLAMES DUE TO REACTANT PREHEATING

机译:由于反应物的预热,未混合的甲烷/火焰的提举和分裂

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In order to assess the impact of initial reactant temperature on the occurrence of local extinction (LE) and the subsequent lifting process of non-premixed attached flames with increasing fuel injection velocity, hydroxyl radical planar laser-induced fluorescence (OH-PLIF) and high-speed CH*-chemiluminescence visualizations were conducted in a methane/ air jet-flame, with preheating up to 1000 K. LE occurrence probability increases when approaching lifting, and the preheating level (T-ox,T-ref) affects the probability density function (PDF) shape of LE axial origin. At low T-ox,T-ref, partial lifting events occur near the burner lip, eventually leading the flame to lift directly from the very flame base. At higher Tox, ref, partial lifting events no longer occur, and LE is mostly witnessed in the flame breakpoint zone (axially from 1 to 3 jet diameters), resulting in a breakpoint lifting process. For very high T-ox,T-ref (1000 K), local extinctions become widespread in the breakpoint zone so that a stable split flame is achieved prior to the lifted regime.
机译:为了评估初始反应温度对局部熄灭(LE)的发生以及随燃料喷射速度增加而发生的非预混附着火焰的后续提升过程的影响,羟基自由基平面激光诱导荧光(OH-PLIF)和高CH *化学发光可视化在甲烷/喷气火焰中进行,预热到1000K。LE的发生概率在接近提升时增加,并且预热水平(T-ox,T-ref)影响概率密度LE轴向原点的函数(PDF)形状。在低的T-ox,T-ref处,部分升起事件发生在燃烧器唇缘附近,最终导致火焰直接从火焰底部直接升起。在较高的Tox,ref下,不再发生部分提升事件,并且LE大多出现在火焰断点区域(轴向从1到3个喷嘴直径),从而导致了断点提升过程。对于非常高的T-ox,T-ref(1000 K),局部熄灭在断点区域变得普遍,因此在提起状态之前会获得稳定的裂焰。

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