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TOTAL TEMPERATURE BASED CORRECTION OF THE TURBULENCE PRODUCTION IN HOT JETS

机译:基于总温度的热射流湍流产生的校正

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Comparisons with experiments have shown that RANS models tend to underpredict the mixing process in shear layers with strong temperature gradients. In the modeling of jet engine's exhaust systems this leads to an overpredicted potential core length and underestimated turbulence intensity in the free jet. In addition, the calculated efficiency gain is lower than indicated by measurements in mixed turbofan engines. Based on the findings from scale-resolving simulations a correction to the turbulence production term is proposed and compared with two NASA-experiments on hot jets. This correction is implemented in a Reynolds-stress and a k-e model. The results are in very good agreement with the experimental data.
机译:与实验的比较表明,RANS模型往往会低估具有强温度梯度的剪切层中的混合过程。在喷气发动机排气系统的建模中,这会导致潜在喷气机芯长的预测过高,而自由喷气机的湍流强度被低估了。另外,所计算的效率增益低于混合涡扇发动机的测量结果。根据水垢分解模拟的发现,提出了湍流产生项的修正,并与两个NASA在热射流上的实验进行了比较。该校正是在雷诺应力和k-e模型中实现的。结果与实验数据非常吻合。

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