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Turbulence modelling techniques for aeroelastic problems: results and comments from the Second AIAA Aeroelastic Prediction Workshop

机译:空气弹性问题的湍流建模技术:第二届AIAA空气弹性预测研讨会的结果和评论

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PurposenThe quality of aeroelastic predictions strongly depends on the quality of aerodynamic predictions. At the boundary of a typical flight envelope, special flow conditions may arise, which challenge the conventional Reynolds-averaged Navier–Stokes (RANS) approach beyond reasonable limits.nDesign/methodology/approachnTest Case 3 of the Second AIAA Aeroelastic Prediction Workshop is a representative test case, where the flow over a supercritical wing separates downstream of the shock waves and generates large turbulent lengthscales.nFindingsnIn this study, RANS predictions are compared to those obtained in this particular test case with the more sophisticated hybrid RANS–large eddy simulation (LES) approach, in particular with the Spalart–Allmaras–delayed detached eddy simulation model. Results are indeed closer to experimental data.nOriginality/valuenHowever, the costs associated with this approach are much higher. It is argued that adopting hybrid RANS–LES modelling is not a simple model switch.
机译:目的空气弹性预测的质量很大程度上取决于空气动力学预测的质量。在典型的飞行包线的边界处,可能会出现特殊的流动条件,这会挑战常规的雷诺平均Navier-Stokes(RANS)方法超出合理范围。n设计/方法/方法第二AIAA空气弹性预测研讨会的测试案例3是一个代表。测试案例,其中超临界机翼上的流动将冲击波的下游分开并产生大的湍流尺度。n研究中,将RANS预测与通过特殊的混合RANS-大涡模拟(LES)在该特定测试案例中获得的预测进行比较。 )方法,特别是使用Spalart–Allmaras延迟的分离涡模拟模型。结果确实更接近实验数据。n原始性/价值n然而,与这种方法相关的成本要高得多。有人认为,采用混合RANS-LES建模不是简单的模型转换。

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