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ODT CLOSURE WITH EXTINCTION AND REIGNITION IN PILOTED METHANE-AIR JET DIFFUSION FLAMES

机译:甲烷空气射流扩散火焰中具有灭绝和消失的ODT关闭

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A novel tabulation procedure for reactive scalar statistics based on the one-dimensional turbulence (ODT) is implemented to study extinction and reignition in piloted methane-air jet diffusion flames. The formulation is based on constructing the scalar statistics from stand-alone temporal jet simulations using ODT. The statistics are correlated in terms of two parameters based on a single transported variable: the mean mixture fraction, which measures the extent of mixing between the fuel and oxidizer streams, and the centerline mixture fraction, which measures the extent of entrainment into the fuel jet or the jet evolution downstream. The evolution of momentum and passive scalars is computed using a Reynolds-Averaged Navier-Stokes (RANS) formulation, which uses the 2D table for look-up of the mean density. Other reactive scalars' profiles are obtained from the 2D table and the computed momentum and scalar fields from RANS. Comparison of the computed and the experimental statistics for momentum and scalars shows that the tabulation scheme along with the RANS model yields reasonable predictions of the processes of extinction and reignition in piloted jet diffusion flames.
机译:基于一维湍流(ODT)的反应标量统计的新制表程序被用来研究甲烷-空气射流扩散火焰的熄灭和重燃。该公式是基于使用ODT从独立的时间射流模拟构造标量统计数据的基础上得出的。基于单个传输变量,通过两个参数将统计数据关联起来:平均混合物分数(用于测量燃料和氧化剂流之间的混合程度)和中心线分数(用于测量夹带到燃料喷嘴中的程度)或下游的射流演变。动量和无源标量的演变是使用雷诺平均Navier-Stokes(RANS)公式计算的,该公式使用2D表查找平均密度。其他反应性标量的分布图可从2D表获得,而计算的动量和标量场可从RANS获得。对动量和标量的计算和实验统计数据进行比较,结果表明,该制表方案与RANS模型一起,对引燃喷射扩散火焰的熄灭和着火过程给出了合理的预测。

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