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High Reynolds number analysis of flat plate and separated afterbody flow using non-linear turbulence models

机译:使用非线性湍流模型对平板和分离后流体的高雷诺数分析

摘要

The ability of the three-dimensional Navier-Stokes method, PAB3D, to simulate the effect of Reynolds number variation using non-linear explicit algebraic Reynolds stress turbulence modeling was assessed. Subsonic flat plate boundary-layer flow parameters such as normalized velocity distributions, local and average skin friction, and shape factor were compared with DNS calculations and classical theory at various local Reynolds numbers up to 180 million. Additionally, surface pressure coefficient distributions and integrated drag predictions on an axisymmetric nozzle afterbody were compared with experimental data from 10 to 130 million Reynolds number. The high Reynolds data was obtained from the NASA Langley 0.3m Transonic Cryogenic Tunnel. There was generally good agreement of surface static pressure coefficients between the CFD and measurement. The change in pressure coefficient distributions with varying Reynolds number was similar to the experimental data trends, though slightly over-predicting the effect. The computational sensitivity of viscous modeling and turbulence modeling are shown. Integrated afterbody pressure drag was typically slightly lower than the experimental data. The change in afterbody pressure drag with Reynolds number was small both experimentally and computationally, even though the shape of the distribution was somewhat modified with Reynolds number.
机译:评估了三维Navier-Stokes方法PAB3D使用非线性显式代数雷诺应力湍流建模模拟雷诺数变化的影响的能力。将亚音速平板边界层流动参数(例如归一化的速度分布,局部和平均皮肤摩擦以及形状因子)与DNS计算和经典理论进行了比较,其中各种局部雷诺数均高达1.8亿。此外,将轴对称喷嘴后阀体上的表面压力系数分布和综合阻力预测与10到1.3亿雷诺数的实验数据进行了比较。高雷诺兹数据是从NASA兰利0.3m跨音速低温隧道获得的。 CFD和测量值之间的表面静压力系数通常很好地吻合。雷诺数变化时压力系数分布的变化与实验数据趋势相似,尽管略有过度预测。显示了粘性建模和湍流建模的计算灵敏度。整体后身压力拖曳通常略低于实验数据。即使分布的形状在一定程度上受到雷诺数的影响,在实验和计算上,随雷诺数变化的后车身压力阻力变化也很小。

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    Carlson John R.;

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  • 年度 1996
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