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Turbulent Structure of a Concentric Annular Flow

机译:同心环形流动的湍流结构

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Turbulent flow in the annular gap between two concentric tubes of 38 and 95 mm diameter at Reynolds number of 79'000 is experimentally investigated. Measurements are conducted using planar particle image velocimetry (PIV) with spatial resolution of 23 μm/pix and interrogation windows of 0.74 × 0.74 mm~2. The experiments are aimed at scrutinizing the location of the extremums of the asymmetric profiles of velocity and turbulent statistics along with the relevant turbulent structures. The location of maximum average streamwise velocity _(max) and zero Reynolds shear stress are observed to be apart. Local minimum of and is also observed to coincide with = 0 and different from _(max). The experiments also demonstrate that the ejection events originating from the inner and outer walls play a dominant role in transport of turbulence toward the midsection of the annulus.
机译:实验研究了在雷诺数的28和95mm直径的两个同心管之间的环形间隙中的湍流。使用平面粒子图像速度(PIV)进行测量,其空间分辨率为23μm/ pix和询问窗口为0.74×0.74mm〜2。实验旨在仔细检查速度和湍流统计数据的不对称谱的极值的位置以及相关的湍流结构。观察到最大平均流速度 _(最大值)和零雷诺剪切应力的位置。还观察到局部最小以与 = 0重合,并且与 _(max)相一致。实验还表明,源自内壁和外壁的喷射事件在湍流朝向环空的中搏中发挥着主导作用。

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