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VELOCITY AND SCALAR MEASUREMENTS IN NEIGHBORING LIFTED EDGE FLAMES

机译:相邻升起的边缘火焰中的速度和标量测量

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Laminar lifted edge flames stabilized above a five-exit slot burner are examined experimentally using particle imaging velocimetry and OH planar laser-induced fluorescence. In the present study, partially premixed methane and air are used to create a single lifted tribrachial flame that replicates many previous studies. Utilizing the same burner, two neighboring lifted tribrachial flames whose flow fields interact are also produced. This interaction results in a previously unknown bifurcation where two stable flame configurations are observed. For modest equivalence ratio gradients, the flow divergence around one flame edge pushes the other edge to an increased lift off height. The upper flame structure continues to impact the orientation and flow field around the lower flame. Global propagation velocities for the flame structure as a whole are greater than that for a single edge flame with the same equivalence ratio gradient. For very small equivalence ratio gradients, a chemical interaction between the edge flames is observed. The two edge flame structures eventually merge as the equivalence ratio gradient is reduced to a point approaching that of a fully premixed flame. These flame interactions may affect the stabilization of flame edges in turbulent flows where multiple stoichio-metric points can exist in close proximity.
机译:使用颗粒成像测速仪和OH平面激光诱导的荧光,通过实验检查了稳定在五出口槽式燃烧器上方的层状提升边缘火焰。在本研究中,使用部分预混合的甲烷和空气来产生单个提升的三臂火焰,该火焰复制了许多先前的研究。使用相同的燃烧器,还会产生两个相邻的提升三臂火焰,它们的流场相互影响。这种相互作用导致以前未知的分叉,其中观察到两个稳定的火焰构型。对于适当的当量比梯度,围绕一个火焰边缘的气流扩散将另一边缘推向更高的升起高度。上部火焰结构继续影响下部火焰周围的方向和流场。总体上,火焰结构的整体传播速度大于具有相同当量比梯度的单边火焰的整体传播速度。对于非常小的当量比梯度,观察到边缘火焰之间的化学相互作用。随着当量比梯度减小到接近完全预混火焰的点,两个边缘火焰结构最终合并。这些火焰相互作用可能会影响湍流中火焰边缘的稳定性,在湍流中多个化学计量点可能紧邻存在。

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