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Probability density function computations of a strongly swirling flame

机译:强涡旋火焰的概率密度函数计算

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The present work is about the investigation of non-premixed combustion when primary air is introduced with swirl. CFD modeling of combustion of methane is accomplished using a Navier-Stoke solver. For turbulence modeling, k-epsilon realizable model is used. Axial and tangential velocities of air and combustion products are calculated at different axial locations to compare with experimental results. The comparison showed a good agreement with experimental data. [1]. Moreover variation of flame length is also studied at different geometrical swirl numbers for primary air introduced. Swirl number is varied by varying tangential velocity of primary air introduced through the annulus region. It was observed that flame length is reduced gradually by increasing the swirl number and improves stability of flame.
机译:目前的工作是关于一次空气以涡流引入时非预混燃烧的研究。甲烷燃烧的CFD建模是使用Navier-Stoke求解器完成的。对于湍流建模,使用k-ε可实现模型。计算了空气和燃烧产物在不同轴向位置的轴向和切向速度,以与实验结果进行比较。比较表明与实验数据吻合良好。 [1]。此外,还针对引入的一次空气在不同几何旋流数下研究了火焰长度的变化。通过改变通过环形区域引入的一次空气的切向速度来改变旋流数。观察到,通过增加旋流数逐渐减小了火焰长度,并改善了火焰的稳定性。

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