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Numerical Investigation on the Influence of Turbulence Models on Prediction of Flow Characteristics of a Scramjet Combustor

机译:湍流模型对汽轮燃烧室流动特性预测的数值研究

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The present work discusses an investigation of behavior of several turbulence models applied to prediction of combustion characteristics of scramjet combustor. In order to evaluate and compare the effectiveness of different turbulent models to predict combustion characteristics, Standard k-ε. Realizable k-ε, and SST k-ω have been considered. The predicted wall static pressure at downstream locations is compared with the experimental and numerical results. It was found that the SST k-ω turbulence model shows the best agreement with the experimental results. Further, it was observed that the SST k-ω turbulence model shows a relatively greater penetration height as compared to other turbulence models. Further, our results reveal that the prediction of shock wave impingement, mixing rate, and vortices is affected by choice of turbulence model used.
机译:本作本作探讨了应用于扰燃燃烧器燃烧特性预测的若干湍流模型的行为的研究。 为了评估和比较不同湍流模型的有效性来预测燃烧特性,标准K-ε。 已考虑可实现的K-ε和SST k-Ω。 将下游位置处的预测壁静压与实验和数值结果进行了比较。 发现SST K-ω湍流模型显示了实验结果的最佳协议。 此外,观察到SSTK-ω湍流模型显示与其他湍流模型相比的相对较大的穿透高度。 此外,我们的结果表明,通过使用所用的湍流模型的选择,对冲击波冲击,混合速率和涡流的预测受到影响。

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