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HCHO PLIF Investigation of the Flame Shape in an Unsteady Swirling Jet Flow

机译:HCHO PLIF对不稳定旋转喷射流动中的火焰形状的研究

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This paper describes an experimental study of the spatial structure of the chemical reaction zone in turbulent swirling flames by planar laser-induced fluorescence of formaldehyde (HCHO). Combustion of the methane-air mixture at atmospheric pressure is considered for different values of the equivalence ratio phi: inverted cone flames for phi = 0.7 and 1.4 and lifted flames for phi = 2.5. Apart from small-scale deformations, the change in the chemical reaction zone shape is associated with two types of large-scale coherent structures, namely, an almost axisymmetric deformation mode, which appears to be due to the buoyancy effect on the combustion products, and rotation of an asymmetric mode due to the precession of the swirling flow.
机译:本文通过平面激光诱导的甲醛(HCHO)的荧光荧光湍流旋转火焰中化学反应区的空间结构的实验研究。 甲烷 - 空气混合物在大气压下的燃烧被认为是对等当量PHI的不同值:PHI = 0.7和1.4的倒置锥体火焰,并为PHI = 2.5提出火焰。 除了小规模变形外,化学反应区形状的变化与两种类型的大规模相干结构相关,即几乎是轴对称变形模式,似乎是由于燃烧产品的浮力影响,以及 由于旋转流动的动态引起的不对称模式旋转。

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