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首页> 外文期刊>Journal of Pressure Vessel Technology >Evaluation of Turbulence Models for Thermal Striping in a Triple Jet
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Evaluation of Turbulence Models for Thermal Striping in a Triple Jet

机译:三重射流热剥离的湍流模型评估

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摘要

A computational study for an evaluation of the current turbulence models for the prediction of a thermal striping in a triple jet is performed. The tested turbulence models are the two-layer model, the shear stress transport model, and the elliptic relaxation model. These three turbulence models are applied to the prediction of a thermal striping in a triple jet in which detailed experimental data are available. The predicted time-averaged and root-mean-square values of the temperature are compared with the experimental data, and the capability of predicting the oscillatory behavior of the ensemble-averaged temperature is investigated. From these works, it is shown that only the elliptic relaxation model is capable of predicting the oscillatory behavior of the ensemble-averaged temperature. It is also shown that the elliptic relaxation model predicts best the time-averaged temperature and the root mean square of the temperature fluctuation. However, this model predicts a slower mixing at the far downstream of the jet.
机译:进行了一项计算研究,以评估当前湍流模型,以预测三重射流中的热剥离。所测试的湍流模型为两层模型,切应力传递模型和椭圆松弛模型。这三个湍流模型被应用于三重射流中热条纹的预测,在三重射流中可获得详细的实验数据。将预测的时间平均温度值和均方根值与实验数据进行比较,并研究了预测集合平均温度的振荡行为的能力。从这些工作可以看出,只有椭圆弛豫模型才能预测集合平均温度的振荡行为。还表明,椭圆弛豫模型可以最好地预测时间平均温度和温度波动的均方根。但是,该模型预测,在射流的下游,混合速度会变慢。

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