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Simulation of self-induced unsteady motion in the near wake of a Joukowski airfoil

机译:Joukowski机翼近尾后自感应非定常运动的模拟

摘要

The unsteady Navier-Stokes analysis is shown to be capable of analyzing the massively separated, persistently unsteady flow in the post-stall regime of a Joukowski airfoil for an angle of attack as high as 53 degrees. The analysis has provided the detailed flow structure, showing the complex vortex interaction for this configuration. The aerodynamic coefficients for lift, drag, and moment were calculated. So far only the spatial structure of the vortex interaction was computed. It is now important to potentially use the large-scale vortex interactions, an additional energy source, to improve the aerodynamic performance.
机译:不稳定的Navier-Stokes分析显示出能够分析Joukowski翼型失速后状态中大分离且持续不稳定的流动,其迎角高达53度。分析提供了详细的流结构,显示了此配置的复杂涡旋相互作用。计算了升力,阻力和力矩的空气动力学系数。到目前为止,仅计算了涡旋相互作用的空间结构。现在很重要的一点是,潜在地使用大型涡旋相互作用(一种额外的能源)来改善空气动力学性能。

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