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The structure of premixed and stratified low turbulence flames

机译:预混和分层低湍流火焰的结构

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Practical combustion systems typically operate in stratified regimes to leverage the advantages of a spatially varying mixture fraction field. Although these benefits are well known in industry, the fundamental physics underpinning these effects are currently an area of active research. In this paper simultaneous Rayleigh-Raman-LIF measurements of temperature and major species concentrations along a line are used to investigate the structure of a weakly turbulent stratified flame. Concurrent cross-planar OH-PL1F enables the extraction of flame orientation relative to the measurement line, as well as flame front curvature. The behavior of major species concentrations with respect to temperature is found to agree well with laminar flames at the local mixture fraction, even in stratified flows. However, measurements of the surface density function, |Vc|, and scalar dissipation, χ_c. suggest that both premixed and stratified flames are spatially thicker at the microscale than corresponding laminar flames.
机译:实际的燃烧系统通常在分层状态下运行,以利用空间变化的混合分数场的优势。尽管这些好处在行业中是众所周知的,但支撑这些影响的基础物理学目前仍是活跃的研究领域。在本文中,同时使用Rayleigh-Raman-LIF测量温度和沿一条线的主要物质浓度,以研究弱湍流分层火焰的结构。并发的交叉平面OH-PL1F能够提取相对于测量线的火焰方向以及火焰前曲率。发现主要物质浓度相对于温度的行为与局部混合物分数下的层流火焰非常吻合,即使在分层流中也是如此。但是,测量的是表面密度函数| Vc |和标量耗散χ_c。这表明,预混火焰和分层火焰在空间上都比相应的层流火焰在空间上更厚。

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