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The Temporal Coherence of Prograde and Retrograde Spanwise Vortices in Zero-Pressure Gradient Turbulent Boundary Layers

机译:零压力梯度湍流边界层中翼展和逆行逆行的翼展血管涡流的时间相干性

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Spatial and temporal statistics associated with spanwise aligned vortical structures are extracted from high repetition rate particle image velocimetry (HR-PIV) experimental measurements of a zero-pressure gradient turbulent boundary layer. Measurements were performed in the LTRAC water tunnel with a momentum thickness-based Reynolds number of Re_θ = 2,250. Streamwise wall-normal planes of the field were recorded at rate of Δt = 0.008δ/U_∞, spanning a streamwise domain of 3.2δ. This enables a single structure to be sampled approximately 400 times for a duration of 3.2δ/U_∞ as it convects downstream. A model Oseen vortex is fit to each local peak in swirling strength, in order to detect and classify the radius, centroid velocity, circulation, and centroid location of each spanwise vortex. Attempts to track the evolution of these vortices show that on average these Oseen vortices only appear to remain temporally coherent for a time of 0.02δ/U_∞.
机译:从零压梯度湍流边界层的高重复率粒子图像速度(HR-PIV)实验测量中提取与翼展对准涡流结构相关的空间和时间统计。 在LTRAC水隧道中进行测量,其动量厚度为基于雷诺数的RE_θ= 2,250。 字段的流动壁正常平面以ΔT=0.008Δ/u_∞的速率记录,跨越3.2δ的流动域。 这使得单个结构能够在下游对流时进行3.2Δ/u_∞的持续时间约400次。 OSEEN涡流模型适合每个旋转强度的局部峰值,以便检测和分类每个翼展涡流的半径,质心速度,循环和质心位置。 试图跟踪这些涡流的演变,表明,平均这些OSEEN涡流似乎似乎在时间上连贯了0.02δ/u_∞。

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