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Conditional filtering method for large-eddy simulation of turbulent nonpremixed combustion

机译:湍流非预混燃烧大涡模拟的条件滤波方法

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The conditional filtering method is proposed as a subfilter combustion model for large-eddy simulation (LES) of turbulent nonpremixed combustion. The novel method is based on conditional filtering of a reactive scalar field and an extension of conditional moment closure (CMC) for LES. Filtering conditioned on isosurfaces of the mixture fraction is adopted to resolve small-scale mixing and chemical reactions in nonpremixed combustion. The conditionally filtered equations are derived and the closure assumptions are discussed. A priori tests are performed using direct numerical simulation data for reacting mixing layers. The primary closure assumption on the subfilter flux in mixture fraction space is shown to work much better than the corresponding closure for the Reynolds averaged CMC due to resolved large-scale fluctuations of the scalar dissipation rate and of reactive scalars. Results show that first-order closure of the reaction rate performs well except for the boundaries of flame holes. In the boundaries of flame holes, fluctuations of reactive scalars around the conditionally filtered values are large enough for the effects of higher-order correlations to be significant. The accuracy of the first-order closure is less sensitive to the level of local extinction than that of first-order CMC, since large-scale fluctuations of reactive scalars on isosurfaces of the mixture fraction are resolved. This shows that extinction processes occur primarily over length scales comparable to the large scales of the turbulence. The integrated conditional filtering approach is introduced to reduce the computational cost and to resolve the low probability problem in the conditional filtering method. While the assumption of homogeneity in the integration direction is not as good as in the conditional average, the integrated formulation is shown to represent the extinction process caused by large-scale fluctuations of the scalar dissipation rate quite well. (c) 2005 American Institute of Physics.
机译:提出了条件过滤方法作为湍流非预混燃烧大涡模拟(LES)的子过滤器燃烧模型。该新方法基于反应性标量场的条件过滤和LES的条件矩闭合(CMC)的扩展。采用以混合物馏分的等值面为条件的过滤,以解决非预混燃烧中的小规模混合和化学反应。推导了条件滤波方程,并讨论了封闭假设。使用直接数值模拟数据对混合层进行反应来进行先验测试。由于解决了标量耗散率和反应性标量的大规模波动,对混合分数空间中的子过滤器通量的主要闭合假设显示出比对雷诺平均CMC的相应闭合更好的工作。结果表明,除火焰孔的边界外,反应速率的一阶封闭效果良好。在火焰孔的边界中,有条件滤除值周围的反应性标量的波动足够大,以至于高阶相关的影响很明显。一阶闭合的精度对局部熄灭水平的敏感性不如一阶CMC精确,这是因为解决了混合级分等值面上反应性标量的大规模波动。这表明灭绝过程主要发生在与大规模湍流相当的长度尺度上。引入集成的条件过滤方法以减少计算成本并解决条件过滤方法中的低概率问题。尽管在积分方向上均质性的假设不如在条件平均值中好,但积分公式显示出很好地代表了由标量耗散率的大规模波动引起的消光过程。 (c)2005年美国物理研究所。

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