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Optical analysis and qualitative discrimination of vortex-flame interaction in a plane premixed shear layer

机译:平面预混剪切层中旋涡-火焰相互作用的光学分析和定性判别

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摘要

To obtain practical schemes of vortex-flame interactions, a series of organized eddies formed in the plane premixed shear layer is investigated, instead of a single vortex ring or a single vortex tube. The plane premixed shear layer is first formed between two parallel uniform propane-air mixture streams. For getting clear qualitative pictures of vortex-flame interactions in the plane premixed shear layer, two extreme ignition points are assigned; one is assigned at the center of an organized eddy where the vortex motion plays an important role, the other at the midpoint between two adjacent organized eddies where the rolling-up motion prevails. A premixed flame is initiated by an electric discharge at one of the two assigned points and propagates either in the large scale organized eddy or along the interface between two uniform mixture streams. Propagation and deformation processes of the flame are observed using the simultaneously two-directional and high-speed Schlieren photography. The tangential velocity of organized eddy and the equivalence ratio of premixed shear flow are varied as two main parameters. The outline of propagating flame after the midpoint ignition is numerically analyzed by superposing the flame propagation having a constant burning velocity on the vortex flow field simulated with the discrete vortex method. The results obtained show that there exists another type of vortex-flame interaction in the plane shear layer in addition to the vortex bursting, and that it is caused by the rolling-up motion particular to the coherent structure in the plane shear layer and is simply named the vortex boosting. It is qualitatively concluded therefore that, in the ordinary turbulent premixed flames formed in the plane premixed shear layer, these two fundamental vortex-flame interactions get tangled with each other to augment the propagation velocity. An empirical expression which qualitatively takes into account of the effects of both vortex and chemical properties is finally proposed.
机译:为了获得涡旋-火焰相互作用的实用方案,研究了在平面预混合剪切层中形成的一系列有组织的涡流,而不是单个涡流环或单个涡流管。首先在两个平行的均匀丙烷-空气混合物流之间形成平面预混合剪切层。为了获得清晰的平面预混合剪切层中涡流-火焰相互作用定性图像,指定了两个极端着火点。一个分配在涡旋运动起重要作用的有组织涡旋的中心,另一个分配在两个向上滚动运动占优势的相邻的两个有组织涡旋之间的中点。预混合火焰由两个指定点之一的放电引发,并以大规模有组织的涡流或沿两个均匀混合物流之间的界面传播。火焰的传播和变形过程是通过同时双向和高速Schlieren摄影来观察的。有组织的涡流的切线速度和预混合剪切流的当量比是两个主要参数。通过用离散涡旋法模拟的涡旋流场上叠加具有恒定燃烧速度的火焰传播,对中点点火后的火焰传播轮廓进行了数值分析。所得结果表明,除了涡旋破裂外,平面剪切层中还存在另一种涡旋-火焰相互作用,这是由于平面剪切层中相干结构所特有的上卷运动引起的,并且很简单。命名为涡流加速。因此,定性地得出结论,在平面预混合剪切层中形成的普通湍流预混合火焰中,这两个基本的涡旋-火焰相互作用相互纠缠以提高传播速度。最后提出了一种定性考虑了涡旋和化学性质影响的经验表达式。

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