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首页> 外文期刊>Combustion Science and Technology >Surface Density Function statistics in hydrogen-air flames for different turbulent premixed combustion regimes
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Surface Density Function statistics in hydrogen-air flames for different turbulent premixed combustion regimes

机译:氢-空气火焰中不同湍流预混燃烧方式下的表面密度函数统计

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摘要

The choice of reaction progress variable (RPV) on the statistical behavior of the surface density function (SDF) and the strain rates, which govern the evolution of SDF, have been analyzed using a detailed chemistry Direct Numerical Simulation (DNS) database of freely propagating statistically planar air flames with an equivalence ratio of 0.7. The DNS database consists of three cases spanning the corrugated flamelets (CF), thin reaction zones (TRZ) and broken reaction zones (BRZ) regimes of premixed turbulent combustion. For this analysis, the RPV is defined based on the mass fractions of H-2, O-2 and H2O. The mean variations of the SDF and the flame displacement speed, , have also been found to be dependent on the choice of the RPV. The progressive weakening (strengthening) of the preferential alignment of the RPV gradient with the most extensive (compressive) principal strain rate with increasing Karlovitz number leads to changes in the behaviors of normal and tangential strain rates from one combustion regime to another. The differences in displacement speed statistics for different choices of RPV affect the behaviors of the normal strain rate due to flame propagation and curvature stretch. The relative thickening/thinning of the reaction layers of the major species has been explained in terms of the statistics of effective normal strain rate experienced by the -isosurfaces for different choices of RPVs.
机译:使用详细的自由传播的化学直接数值模拟(DNS)数据库分析了对表面密度函数(SDF)的统计行为和决定SDF演变的应变率的反应进度变量(RPV)的选择。统计平面图,当量比为0.7。 DNS数据库由三个案例组成,涵盖了预混湍流燃烧的波纹小火焰(CF),薄反应区(TRZ)和破碎反应区(BRZ)方案。对于此分析,RPV是基于H-2,O-2和H2O的质量分数定义的。还发现SDF和火焰位移速度的平均变化取决于RPV的选择。随着Karlovitz数的增加,具有最广泛(压缩)主应变率的RPV梯度优先排列的逐渐弱化(强化)会导致法向和切向应变率从一种燃烧方式到另一种燃烧方式的变化。由于火焰传播和曲率拉伸,不同RPV选择的位移速度统计数据的差异会影响法向应变率的行为。主要物种的反应层的相对增厚/变薄已经根据不同选择的RPV的>等值面所经历的有效法向应变率的统计数据进行了解释。

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