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Influence of Lewis number on curvature effects in turbulent premixed flame propagation in the thin reaction zones regime

机译:刘易斯数对稀薄反应区湍流预混火焰传播曲率效应的影响

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The influence of differential diffusion on the statistical behavior of the local displacement speed (S-d) in relation to flame curvature is studied based on three-dimensional compressible direct numerical simulations (DNS) of statistically planar flames with single-step Arrhenius-type chemistry. Three different Lewis number cases (Le+AD0-0.8, 1.0, and 1.2) are considered. In order to study the influence of differential diffusion on curvature effects in flame propagation, temperature statistics are presented in terms of standard probability density functions (pdfs) and also joint pdfs with curvature for the nonunity Lewis number cases. Temperature statistics are found to be consistent with previous incompressible combustion DNS studies. It is found that both dilatation and tangential strain rate are negatively correlated with curvature. The relative strength of these two correlations determines the nature of the correlation between surface density function (SDF) (vertical bar del c vertical bar) and curvature. It is also found that the variations of temperature and SDF on an isosurface of reaction progress variable (c) have significant influence on local displacement speed behavior. Displacement speed statistics are presented in terms of standard pdfs as well as joint pdfs with curvature for the three Lewis number cases. The curvature response of the displacement speed and its different components is found to be nonlinear which is consistent with previous two-dimensional DNS with detailed chemistry. The observed nonlinear behavior in the present study in the absence of a detailed chemical mechanism is explained through the influence of differential diffusion. (c) 2005 American Institute of Physics.
机译:基于单步Arrhenius型化学反应的统计平面火焰的三维可压缩直接数值模拟(DNS),研究了微分扩散对局部位移速度(S-d)与火焰曲率有关的统计行为的影响。考虑了三种不同的Lewis数情况(Le + AD0-0.8、1.0和1.2)。为了研究微分扩散对火焰传播中曲率效应的影响,针对标准刘易斯数情形,以标准概率密度函数(pdf)以及具有曲率的联合pdfs的形式给出了温度统计数据。发现温度统计数据与以前的不可压缩燃烧DNS研究一致。结果发现,膨胀率和切向应变率均与曲率负相关。这两个相关性的相对强度决定了表面密度函数(SDF)(垂直线和垂直线)与曲率之间的相关性。还发现反应进度变量(c)的等值面上温度和SDF的变化对局部位移速度行为具有重要影响。对于三种Lewis数情况,以标准pdf以及具有曲率的联合pdf表示位移速度统计数据。发现位移速度及其不同分量的曲率响应是非线性的,这与先前的具有详细化学性质的二维DNS一致。通过微分扩散的影响解释了在没有详细化学机制的情况下本研究中观察到的非线性行为。 (c)2005年美国物理研究所。

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