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Dynamics of upstream flame propagation in a hydrogen-enriched premixed flame

机译:富氢预混火焰中上游火焰传播的动力学

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An unconfined strongly swirled flow is investigated to study the effect of hydrogen addition on upstream flame propagation in a methane-air premixed flame using Large Eddy Simulation (LES) with a Thickened Flame (TF) model. A laboratory-scale swirled premixed combustor operated under atmospheric conditions for which experimental data for validation is available has been chosen for the numerical study. In the LES-TF approach, the flame front is resolved on the computational grid through artificial thickening and the individual species transport equations are directly solved with the reaction rates specified using Arrhenius chemistry. Good agreement is found when comparing predictions with the published experimental data including the predicted RMS fluctuations. Also, the results show that the initiation of upstream flame propagation is associated with balanced maintained between hydrodynamics and reaction. This process is associated with the upstream propagation of the center recirculation bubble, which pushes the flame front in the upstream mixing tube. Once the upstream movement of the flame front is initiated, the hydrogen-enriched mixture exhibits more unstable behavior; while in contrast, the CH_4 flame shows stable behavior.
机译:使用大涡模拟(LES)和加厚火焰(TF)模型,研究了无限制的强旋流,以研究氢气对甲烷-空气预混火焰中上游火焰传播的影响。数值研究选择了在大气条件下运行的实验室规模的涡旋预混燃烧器,可获得可用于验证的实验数据。在LES-TF方法中,通过人工增厚在计算网格上求解火焰前沿,并使用Arrhenius化学方法指定的反应速率直接求解单个物种的传输方程。将预测与已发布的实验数据(包括预测的RMS波动)进行比较时,可以找到很好的一致性。同样,结果表明上游火焰传播的开始与流体动力学和反应之间保持平衡有关。该过程与中心再循环气泡的上游传播相关,该中心再循环气泡将火焰推向上游混合管中。一旦开始火焰前缘的上游运动,富氢混合物就会表现出更加不稳定的行为。而CH_4火焰表现出稳定的行为。

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