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Conditional source-term estimation with laminar flamelet decomposition in large eddy simulation of a turbulent nonpremixed flame

机译:湍流非预混火焰大涡模拟中层流小火焰分解的条件源项估计

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Conditional source-term estimation (CSE) is a method to close the mean chemical reaction source term based on the conditional moment closure hypothesis. It has been shown previously to be successful in a priori tests against direct numerical simulation data and in the large eddy simulation (LES) of a nonpremixed flame using reduced chemistry. Laminar flamelet decomposition (LFD) is a method to incorporate more complex chemistry into CSE by using laminar flamelets as basis functions and inverting an integral equation for a basis function coefficient vector which describes the linear combination of flamelets that best approximates the conditional average of certain scalar fields within an ensemble of points in a flow field. This coefficient vector is used to obtain the conditional average of the chemical source term for this ensemble of points which can then be transformed into the unconditional average chemical source term in the transport equations of reactive scalars in the flow. This study focuses on the application of CSE with LFD in LES of the Sandia D-flame. The simulation results show that LFD is able to predict temperature and major species well with both steady and unsteady flamelet libraries. However, in order to predict NO well, it is necessary to use a mixed library that includes both steady and unsteady flamelets. The computational cost of this method is low because very few transport equations need to be solved (specifically, equations for the filtered continuity, momentum, mixture fraction and its variance, temperature and the mass fraction of CO are solved) while other species mass fractions can be obtained directly from the flamelet library. (c) 2007 American Institute of Physics.
机译:条件源项估计(CSE)是一种基于条件矩闭合假设来关闭平均化学反应源项的方法。先前已经证明,在针对直接数值模拟数据的先验测试中以及在使用还原化学方法对非预混火焰的大涡流模拟(LES)中,它是成功的。层流小火焰分解(LFD)是一种通过将层流小火焰作为基本函数并将基本函数系数向量的积分方程求逆的方法,将更复杂的化学成分结合到CSE中,该函数描述了最能逼近某些标量的条件平均值的小火焰的线性组合流场中的点集合内的所有场。该系数向量用于获得该点集合的化学源项的条件平均值,然后可以将其转换为流中反应性标量的传输方程中的无条件平均化学源项。这项研究的重点是CFD和LFD在Sandia D-flame的LES中的应用。仿真结果表明,LFD能够使用稳定和非稳定小火焰库很好地预测温度和主要种类。但是,为了很好地预测NO,有必要使用同时包含稳定和非稳定小火焰的混合库。该方法的计算成本较低,因为需要求解的输运方程很少(特别是,可以求解过滤的连续性,动量,混合分数及其方差,温度和CO的质量分数的方程),而其他物种的质量分数可以直接从flamelet库获取。 (c)2007年美国物理研究所。

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