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Direct Numerical Simulations of Turbulent Channel Flow with Local Forcing at Walls

机译:壁面局部强迫作用下湍流通道的直接数值模拟

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摘要

Direct Numerical Simulations (DNS) of the velocity field in a fully developed turbulent channel flow are presented. Periodic normal blowing/suction velocity disturbances at both walls are considered in order to investigate numerically the influence of local forcing on the turbulent structures. Local forcing is modeled as a boundary condition with sinusoidally oscillating normal velocities in thin spanwise slots located cyclically along the streamwise direction. By locally perturbing the flow, a skin friction reduction is attained in a zone situated downstream of the perturbing source. The maximum local skin friction reduction of 30% is accomplished at the maximum forcing amplitude considered, A_o= 0.35, with an intermediate frequency of f= 0.04. A phase-averaging procedure is employed to discriminate between coherent and uncoherent structures, and together with the highest level of information provided by DNS, allow a better understanding of the physical mechanism responsible for drag reduction.
机译:提出了在完全发展的湍流通道中速度场的直接数值模拟(DNS)。为了定量研究局部强迫对湍流结构的影响,考虑了两壁的周期性法向吹气/吸气速度扰动。将局部强迫建模为边界条件,并在沿流向周期性分布的细翼展方向缝隙中以正弦振荡法向速度振荡。通过局部扰动流动,在位于扰动源下游的区域中实现了皮肤摩擦的减小。在考虑的最大施力幅度A_o = 0.35且中间频率为f = 0.04的情况下,可以最大程度地减少30%的局部皮肤摩擦。采用相位平均过程来区分相干结构和非相干结构,并与DNS提供的最高级别的信息一起,可以更好地理解造成减阻的物理机制。

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