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Experimental Assessment of Drag Reduction by Traveling Waves in a Turbulent Pipe Flow

机译:湍流管道中行波减少阻力的实验评估

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摘要

We experimentally assess the capabilities of an active, open-loop technique for drag reduction in turbulent wall flows recently introduced by Quadrio et al. [J. Fluid Mech. 627, 161 (2009)] . The technique consists of generating streamwise-modulated waves of spanwise velocity at the wall, which travels in the streamwise direction. A proof-of-principle experiment has been devised to measure the reduction of turbulent friction in a pipe flow, in which the wall is subdivided into thin slabs that rotate independently in the azimuthal direction. Different speeds of nearby slabs provide, although in a discrete setting, the desired streamwise variation of transverse velocity. Our experiment confirms the available DNS results, and in particular, demonstrates the possibility of achieving large reductions of friction in the turbulent regime. Reductions up to 33% are obtained for slowly forward-traveling waves; backward-traveling waves invariably yield drag reduction, whereas a substantial drop of drag reduction occurs for waves traveling forward with a phase speed comparable to the convection speed of near-wall turbulent structures. A Fourier analysis is employed to show that the first harmonics introduced by the discrete spatial waveform that approximates the sinusoidal wave are responsible for significant effects that are indeed observed in the experimental measurements. Practical issues related to the physical implementation of this control scheme and its energetic efficiency are briefly discussed.
机译:我们通过实验评估了Quadrio等人最近引入的主动,开环技术减少湍流壁流阻力的能力。 [J.流体机械。 627,161(2009)]。该技术包括在壁上生成沿展向速度的流调制波,该波沿流向传播。已经设计了原理验证实验来测量管道流中湍流摩擦的减小,其中,将壁细分为薄板,这些薄板沿方位角方向独立旋转。尽管在离散的设置中,附近平板的不同速度提供了所需的横向速度沿流的变化。我们的实验证实了可用的DNS结果,尤其是证明了在湍流状态下实现大幅度降低摩擦的可能性。缓慢向前移动的波最多可减少33%;向后移动的波始终会产生减阻作用,而对于以相近于近壁湍流结构对流速度的相速度向前传播的波,减阻作用会显着下降。使用傅立叶分析表明,由离散空间波形(近似于正弦波)引入的一次谐波造成了在实验测量中确实观察到的重大影响。简要讨论了与此控制方案的物理实施及其能量效率有关的实际问题。

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