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Experimental and numerical investigation of transversal traveling surface waves for drag reduction

机译:横向行波表面波减阻的实验与数值研究

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The active drag reduction impact of spanwise transversal surface waves on a turbulent boundary layer is investigated experimentally and numerically. The actuated surface in the experimental setup is an insert in a flat aluminum plate being excited by an electromagnetic actuator system. Particle-image velocimetry and mu-particle-tracking velocimetry measurements are conducted to determine the local drag reduction downstream of the actuated surface. Furthermore, large-eddy simulations are performed to corroborate that the overall friction decrease can be determined by the local skin friction measurements downstream of the actuated surface. The Reynolds number based on the momentum thickness located directly downstream of the actuated surface is Re-theta = 1300. The spanwise traveling wave has an amplitude of A(+) = 9, a wave length of lambda(+) = 3862, and a period of T+ = 115. The experimental and numerical results of the velocity distributions show an excellent agreement upstream and downstream of the actuated surface. The low amplitude which is caused by the actuation constraints due to the technically relevant material aluminum leads to low drag reduction values of 1.27% and 0.89% in the simulation and the measurement. A dominant influence of the transition from the actuated wall to the non-actuated surface is excluded. Thus, a detection of the impact of the wall motion by local skin friction measurements downstream of the actuated surface is feasible. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:实验和数值研究了翼展横向表面波对湍流边界层的主动减阻作用。在实验装置中,被驱动表面是由电磁执行器系统激励的扁平铝板上的插入物。进行颗粒图像测速和μ-颗粒跟踪测速来确定致动表面下游的局部减阻。此外,执行大涡模拟以证实总摩擦减小可以通过被致动表面下游的局部皮肤摩擦测量来确定。基于直接位于被驱动表面下游的动量厚度的雷诺数为Re-theta =1300。翼展方向行波的振幅为A(+)= 9,波长为lambda(+)= 3862,且a T + = 115的周期。速度分布的实验和数值结果表明,在被驱动表面的上游和下游具有极好的一致性。由技术上相关的材料铝引起的致动约束导致的低振幅导致在模拟和测量中的减阻值分别为1.27%和0.89%。从致动壁到非致动表面的过渡的主要影响被排除在外。因此,通过被致动表面下游的局部皮肤摩擦测量来检测壁运动的影响是可行的。 (C)2015 Elsevier Masson SAS。版权所有。

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