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Stochastic modelling and feedback control of bistability in a turbulent bluff body wake

机译:湍流钝体尾流中双稳态的随机建模和反馈控制

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摘要

A specific feature of three-dimensional bluff body wakes, flow bistability, is a subject of particular recent interest. This feature consists of a random flipping of the wake between two asymmetric configurations and is believed to contribute to the pressure drag of many bluff bodies. In this study we apply the modelling approach recently suggested for axisymmetric bodies by Rigas et al. (J. Fluid Mech., vol. 778, 2015, R2) to the reflectional symmetry-breaking modes of a rectilinear bluff body wake. We demonstrate the validity of the model and its Reynolds number independence through time-resolved base pressure measurements of the natural wake. Further, oscillating flaps are used to investigate the dynamics and time scales of the instability associated with the flipping process, demonstrating that they are largely independent of Reynolds number. The modelling approach is then used to design a feedback controller that uses the flaps to suppress the symmetry-breaking modes. The controller is successful, leading to a suppression of the bistability of the wake, with concomitant reductions in both lateral and streamwise forces. Importantly, the controller is found to be efficient, the actuator requiring only 24 % of the aerodynamic power saving. The controller therefore provides a key demonstration of efficient feedback control used to reduce the drag of a high-Reynolds-number three-dimensional bluff body. Furthermore, the results suggest that suppression of large-scale structures is a fundamentally efficient approach for bluff body drag reduction.
机译:三维虚张声势的身体苏醒的一个特定特征,流动双稳态性,是最近特别引起关注的主题。该特征包括在两个不对称构型之间的尾流的随机翻转,并且被认为会导致许多虚张声势体的压力拖曳。在这项研究中,我们采用了Rigas等人最近为轴对称体建议的建模方法。 (J. Fluid Mech。,vol。778,2015,R2)到直线钝体尾流的反射对称破坏模式。我们通过时间分辨的自然苏醒的基础压力测量结果证明了该模型及其雷诺数独立性的有效性。此外,振荡襟翼用于研究与翻转过程相关的不稳定性的动力学和时间尺度,表明它们在很大程度上与雷诺数无关。然后,使用建模方法来设计反馈控制器,该控制器使用襟翼抑制对称破坏模式。控制器是成功的,从而抑制了尾流的双稳性,同时减小了横向力和水流力。重要的是,发现控制器是高效的,执行器仅需要节省24%的空气动力功率。因此,该控制器提供了有效反馈控制的关键演示,该反馈控制用于减少高雷诺数三维钝体的阻力。此外,结果表明抑制大型结构是从根本上有效的减少钝体阻力的方法。

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