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Lean Flame Root Dynamics in a Gas Turbine Model Combustor

机译:燃气轮机模型燃烧器的稀薄火焰根动力学

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摘要

A swirl-stabilised flame close to blow-off conditions in a gas turbine model combustor is investigated using large eddy simulation. The sub-grid combustion is modelled using a presumed probability density function approach along with flamelets. Good comparisons between the computed and measured statistics are observed. This allows for a detailed investigation of the flame behaviour. Two distinct stages are noted for the flame behaviour. The flame has a steady and stable flame root anchored near the entrance to the burner, yielding a "V" shaped flame in Stage 1, and a transient lift-off event is observed in Stage 2. These two stages switch from one to the other, giving the unstable flame behaviour, as observed in the experimental studies. Further analysis of the simulations shows that large-scale scalar mixing plays a prominent role in the stabilisation of the flame and the entrainment of inflammable mixtures near the flame root location initiates the lift-off event.
机译:使用大涡模拟研究了燃气轮机模型燃烧室中接近吹扫条件的涡旋稳定火焰。使用假定的概率密度函数方法和小火焰对子网格燃烧进行建模。观察到在计算的统计数据和测量的统计数据之间有良好的比较。这样可以详细研究火焰行为。注意到火焰行为有两个不同的阶段。火焰具有稳定且稳定的火焰根部,锚定在燃烧器的入口附近,在阶段1中产生“ V”形火焰,在阶段2中观察到瞬态升空事件。这两个阶段从一个转换为一个如实验研究中所观察到的那样,另一种产生不稳定的火焰行为。对模拟的进一步分析表明,大规模标量混合在火焰稳定中起着重要作用,并且在火焰根位置附近夹带易燃混合物会引发升空事件。

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