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A HYBRID-LES-RANS TRANSPORTED PDF COMBUSTION MODEL FOR NON-PREMIXED FLAMES

机译:非半成品火焰的混合LES-RANS传输PDF燃烧模型

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The intention of this work is to combine Large-Eddy-Simulation (LES) for the prediction of flow and mixture fraction fields with a Reynolds-Averaged-Navier-Stokes (RANS) transported probability density function (TPDF) method for the prediction of turbulent non-premixed flames. The motivation for this work is based upon the property of LES to provide a better description of complex flow fields than most current RANS methods can offer, while TPDF-methods excel in predicting the reacting species fields. However, using the straight forward extension of PDF methods for LES, the filtered density function (FDF) approach requires a large number of PDF particles in each LES cell and is thus computationally expensive. Therefore, a method is proposed to use the time-averaged LES flow field, mixture fraction field and mixture fraction PDF as a turbulence model for a RANS TPDF method operating on a much coarser grid. A projection of the mixture fraction conditioned PDF to evaluate the instantaneous LES density field is proposed as coupling device. The reconstruction of mixture fraction PDF from a LES simulation and the coupling to the TPDF method in postprocessing mode is validated using the TNF Sandia D flame, showing good agreement with experiment.
机译:这项工作的目的是将大涡模拟(LES)与流场和混合分数场的预测与雷诺平均Navier-斯托克斯(RANS)传输概率密度函数(TPDF)方法相结合来预测湍流非预混火焰。这项工作的动机是基于LES的特性,以提供比大多数当前RANS方法所能提供的更好的复杂流场描述,而TPDF方法在预测反应物种场方面表现出色。但是,使用针对LES的PDF方法的直接扩展,滤波密度函数(FDF)方法在每个LES单元中需要大量PDF粒子,因此计算量大。因此,提出了一种方法,该方法使用时间平均的LES流场,混合分数场和混合分数PDF作为在更粗糙的网格上运行的RANS TPDF方法的湍流模型。提出了以混合组分为条件的PDF投影,以评估瞬时LES密度场,作为耦合装置。使用TNF Sandia D火焰验证了从LES模拟重建混合物分数PDF以及在后处理模式下将其与TPDF方法耦合使用了TNF Sandia D火焰验证,表明与实验吻合良好。

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