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ON SCALAR DISSIPATION AND PARTIALLY PREMIXED FLAME PROPAGATION

机译:标量耗散和部分预混合火焰的传播

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Measurements of the scalar dissipation rate in the region immediately upstream of a lifted jet flame are presented. The scalar dissipation is determined in this isothermal region from a planar measurement of a two-dimensional conserved scalar (jet fluid) using laser Rayleigh scattering. Fields of the scalar dissipation rate are presented in addition to tabulated values for three different liftoff heights (Re_d = 4800, 6400, and 8300). Scalar dissipation rates do not reach levels thought to cause extinction of the leading edge based on comparison with extinction data for counterflow diffusion flames. Additionally, results are presented on the axial flame propagation velocities relative to the jet flow. The data indicate that over the three flow conditions, the flame velocity relative to the flow is approximately constant during the case of a quasi-stationary lifted flame. In light of these findings, it is suggested that concepts involving partially premixed flame propagation, rather than those of critical scalar dissipation rate, are central to modern lifted flame stabilization models.
机译:给出了紧靠喷射火焰上游区域的标量耗散率的测量结果。使用激光瑞利散射,通过二维守恒标量(喷射流体)的平面测量,在此等温区域中确定标量耗散。除了三个不同的提离高度(Re_d = 4800、6400和8300)的列表值之外,还显示了标量耗散率的字段。根据与逆流扩散火焰的消光数据进行比较,标量耗散率未达到导致前沿消光的水平。此外,还给出了相对于射流的轴向火焰传播速度的结果。数据表明,在三种流动条件下,在准平稳提升火焰情况下,相对于火焰的火焰速度近似恒定。根据这些发现,建议涉及部分预混火焰传播而不是临界标量耗散率的概念是现代提升火焰稳定模型的核心。

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