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Predictions of Aero-Optical Distortions Using LES with Wall Modeling

机译:使用壁模型的LES预测航空光学失真

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Large-eddy simulation (LES) with wall-modeling is evaluated for applications to aero-optical predictions at practical Reynolds numbers. Turbulent boundary layers and flow over a cylindrical turret are considered. The results of boundary-layer flows at both subsonic and supersonic speeds show accurate predictions of mean velocity profiles and velocity fluctuations. The density fluctuations and hence wavefront distortions are found to be more demanding in terms of grid resolution. The subsonic separated shear layer over a cylindrical turret is computed at the same Reynolds number as in the experiment conducted by Gordeyev et al. Both flow and optical results show good agreement with the experimental measurements and the previous wall-resolved LES results of Wang et al. at a reduced Reynolds number.
机译:对具有壁面建模的大涡模拟(LES)进行了评估,以应用于实际雷诺数下的航空光学预测。考虑了湍流边界层和圆柱转塔上的流动。亚音速和超音速速度下边界层流动的结果表明平均速度分布和速度波动的准确预测。在网格分辨率方面,发现密度波动以及因此波前失真的要求更高。圆柱转塔上的亚音速分离剪切层的计算雷诺数与Gordeyev等人进行的实验相同。流动和光学结果都与实验测量结果和Wang等人先前的壁解析LES结果吻合良好。雷诺数减少了。

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