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首页> 外文期刊>Journal of combustion >Consistent Conditional Moment Closure Modelling of a Lifted Turbulent Jet Flame Using the Presumed β-PDF Approach
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Consistent Conditional Moment Closure Modelling of a Lifted Turbulent Jet Flame Using the Presumed β-PDF Approach

机译:使用假定的β-PDF方法对湍流射流火焰进行一致的条件矩闭合建模

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摘要

A lifted H_2/N_2 turbulent jet flame issuing into a vitiated coflow is investigated using the conditional moment closure. The conditional velocity (CV) and the conditional scalar dissipation rate (CSDR) submodels are chosen such that they are fully consistent with the moments of the presumed β probability density function (PDF). The CV is modelled using the PDF-gradient diffusion model. Two CSDR submodels based on the double integration of the homogeneous and inhomogeneous mixture fraction PDF transport equations are implemented. The effect of CSDR modelling is investigated over a range of coflow temperatures (T_c) and the stabilisation mechanism is determined from the analysis of the transport budgets and the history of radical build-up ahead of the stabilisation height. For all T_c, the balance between chemistry, axial convection, and micromixing, and the absence of axial diffusion upstream of the stabilisation height indicate that the flame is stabilized by autoignition. This conclusion is confirmed from the rapid build-up of HO_2 ahead of H, O, and OH. The inhomogeneous CSDR modelling yields higher dissipation levels at the most reactive mixture fraction, which results in longer ignition delays and larger liftoff heights. The effect of the spurious sources arising from homogeneous modelling is found to be small but nonnegligible, mostly notably within the flame zone.
机译:使用条件矩闭塞研究了升起的H_2 / N_2湍流射流火焰发散为同流。选择条件速度(CV)和条件标量耗散率(CSDR)子模型,以便它们与假定的β概率密度函数(PDF)的矩完全一致。使用PDF梯度扩散模型对CV进行建模。基于均质和非均质混合分数PDF传输方程的双重积分,实现了两个CSDR子模型。在一定的同流温度(T_c)范围内研究了CSDR建模的影响,并通过分析运输预算和稳定高度之前的自由基积累历史确定了稳定机理。对于所有T_c,化学,轴向对流和微混合之间的平衡,以及在稳定高度上游不存在轴向扩散,表明火焰通过自燃得以稳定。从H,O和OH之前HO_2的快速积累可以证实这一结论。不均匀的CSDR模型在最高反应性混合比下产生更高的耗散水平,这导致更长的点火延迟和更大的升空高度。发现均质建模产生的杂散源的影响很小,但不可忽略,特别是在火焰区域内。

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  • 来源
    《Journal of combustion》 |2014年第2014期|507459.1-507459.25|共25页
  • 作者单位

    Department of Mechanical and Mechatronics Engineering, University of Waterloo, 200 University Avenue West, Waterloo, ON, Canada N2L 3G1;

    Department of Mechanical and Mechatronics Engineering, University of Waterloo, 200 University Avenue West, Waterloo, ON, Canada N2L 3G1;

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