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Validation and implementation of algebraic LES modelling of scalar dissipation rate for reaction rate closure in turbulent premixed combustion

机译:湍流预混燃烧反应速率封闭的标量耗散率的代数LES模型的验证和实现

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The closure of the filtered reaction rate of the reaction progress variable using an algebraic model for Favre-filtered Scalar Dissipation Rate (SDR) N_c in turbulent premixed combustion has been assessed in the context of Large Eddy Simulations (LES). This assessment consists of a priori Direct Numerical Simulation (DNS) analysis based on freely propagating statistically planar turbulent premixed flames and a posteriori analysis, involving the LES simulations of a well-documented rectangular dump combus-tor configuration with sudden expansion (i.e. ORACLES burner) and a premixed flame stabilised on a triangular bluff body flame holder (i.e. Volvo Rig). It has been found that the newly developed SDR model satisfactorily captures N_c obtained from explicitly filtered DNS data. The predictions of this SDR based LES closure in the ORACLES burner and Volvo Rig configurations exhibit good agreement with experimental results without requiring any major modification to the model parameters. The predictions of the SDR model for the LES of the ORACLES burner and Volvo Rig have been compared to those of two algebraic Flame Surface Density (FSD) models, which yielded satisfactory agreement with experimental data in a previous analysis. The performance of the SDR based closure remains either comparable to or better than the FSD based closures for the two test configurations considered in this analysis.
机译:在大型涡流模拟(LES)的背景下,已经评估了使用Favre滤波的标量耗散率(SDR)N_c在湍流预混燃烧中的代数模型对反应进程变量的已滤波反应速率的关闭。该评估包括基于自由传播的统计平面湍流预混火焰的先验直接数值模拟(DNS)分析和后验分析,其中包括有据可查的具有突然膨胀的矩形垃圾场燃烧器/燃烧器配置的LES模拟(即ORACLES燃烧器)然后将预混合火焰稳定在三角形钝体火焰支架(即沃尔沃钻机)上。已经发现,新开发的SDR模型可以令人满意地捕获从显式过滤的DNS数据获得的N_c。在ORACLES燃烧器和沃尔沃钻机配置中基于SDR的LES封闭的预测与实验结果显示出很好的一致性,而无需对模型参数进行任何重大修改。将ORACLES燃烧器和沃尔沃钻机的LES的SDR模型的预测与两个代数火焰表面密度(FSD)模型的预测进行了比较,在先前的分析中与实验数据取得了令人满意的一致性。对于本分析中考虑的两个测试配置,基于SDR的封闭的性能仍可与基于FSD的封闭相媲美或更好。

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