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THE EFFECT OF AN ACTIVE TRAVELLING WAVE WALL MOTION ON THE STRUCTURE OF A TURBULENT BOUNDARY LAYER

机译:行进波壁运动对湍流边界层结构的影响

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摘要

The topic of drag reduction (DR) in wall-bounded turbulent flows has received great attention over the past thirty years. This effort is motivated by-the notion that the internal near wall structure of a turbulent flow can be substantially affected if a force is exerted on the fluid by a traveling wave propagating transversely on an active compliant surface. The work presented here supports this notion by demonstrating that the active skin results in organizing the structures that populate the near wall flow. For the first time, this mechanism is shown to significantly reduce the contribution of the Reynolds stresses to the viscous drag. The modification of the turbulent near wall flow as a function of actuation frequency is investigated and the persistence of the flow control is explored. In addition, the performance of the mechanical active skin actuator is characterized and a first order estimate of its energetics is achieved.
机译:在过去的三十年中,壁面湍流中的减阻(DR)主题受到了广泛关注。这种努力是由以下观念激发的:如果在横向方向上在活动的柔性表面上传播的行波将力施加在流体上,则湍流的内部近壁结构会受到实质影响。这里展示的工作通过证明活跃的皮肤导致组织填充近壁流的结构来支持这一观点。首次表明,该机制显着降低了雷诺应力对粘性阻力的影响。研究了湍流近壁流随驱动频率的变化,并探讨了流量控制的持久性。另外,表征了机械主动式皮肤致动器的性能并获得了其能量的一阶估计。

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