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Evaluation of Full Reynolds Stress Turbulence Models in FUN3D for Axisymmetric Jet Flow

机译:用于轴对称喷射流量的Fun3D中全新雷诺应力湍流模型的评估

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Two full seven-equation turbulence models available in the FUN3D code are evaluated for their ability to improve the computation of challenging mixing flows encountered in aerospace propulsion. These models are the SSG/LRR and Wilcox full second-moment Reynolds stress models. They solve equations for the six components of the Reynolds stress and a seventh equation for the turbulent length scale. Two standard eddy viscosity models are also evaluated for comparison, the Spalart-Allmaras (SA) one-equation model and the Menter Shear Stress Transport (SST-V) two-equation turbulence model. Flow through an axisymmetric reference nozzle is examined at three flow conditions: subsonic unheated, subsonic heated, and near sonic unheated. Centerline profiles of velocity and turbulent kinetic energy and radial profiles of velocity, turbulent kinetic energy and turbulent stresses are examined. Results showed that the SA model did well at predicting the jet potential core length, but over-mixed the downstream flow, whereas the SST-V model over-predicted the potential core length. The Wilcox-model significantly over-predicted the potential core length and under-predicted the mixing and was not well-suited for the jet flows evaluated, however the SSG/LRR Reynolds stress model did well at predicting the mixing rate and mean velocity for all cases examined.
机译:在Fun3D代码中提供的两个完整的七个方程湍流模型可用于改进在航空推进中遇到的具有挑战性的混合流动的能力。这些型号是SSG / LRR和Wilcox全秒雷诺压力模型。它们解决了雷诺应力的六个部件的方程和湍流长度尺度的第七方程。还评估了两种标准涡流模型,以进行比较,Spalart-Allmaras(SA)单方程模型和导师剪切应力传输(SST-V)两方程湍流模型。通过轴对称参考喷嘴进行流动,在三个流动条件下检查:亚音速加热,子旋转加热,靠近声音加热。检查了速度和湍流动能和速度速度,湍流动能和湍流应力的速度和湍流动能和径向谱的中心线概况。结果表明,SA模型在预测射流势芯长度,但过度混合下游流动,而SST-V型号过度预测潜在的核心长度。 Wilcox-Model显着过度地过度预测了潜在的核心长度和欠预测混合,并且对评估的喷射流不太适合,但是SSG / LRR Reynolds应力模型在预测所有的混合速率和平均速度时确实很好案件审查。

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