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Measurement of developing turbulent flow in a U-bend of circular cross-section

机译:圆形截面U形弯中产生的湍流的测量

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摘要

Hot-wire measurements of the full mapping of the velocity and Reynolds stress components are reported for developing turbulent flow in a strongly curved 180 deg pipe and its tangents. A slanted wire is rotated into 6 orientations and the voltage outputs from wires are combined to obtain the mean velocity and Reynolds stress components. The strength of secondary flow reaches up to the 28% of bulk mean velocity. The strong counter-rotating vortex pair induced by the transverse pressure gradient and centrifugal force imbalance grows up to Θ = 67.5° into the bend. But the vortex pair breaks down into two cell pattern after Θ=90° Core vortex formation and reversal of secondary flow direction along the bend symmetry plane is cleanly found in the secondary vector plot. At Θ=67.5° and Θ = 90° into bend a large “trough” develops in the longitudinal velocity toward the inside of the bend due to the breakdown of secondary flow. In the bend, the mean longitudinal velocity component changes little after Θ=90°, but secondary flow never achieves fully-developed state. Similar behaviors are observed in the radial and circumferential stresses.
机译:报道了在强烈弯曲的180度管道及其切线中产生湍流的速度和雷诺应力分量的完整映射的热线测量。将倾斜的导线旋转到6个方向,然后将导线的电压输出组合起来,以获得平均速度和雷诺应力分量。二次流的强度高达整体平均速度的28%。由横向压力梯度和离心力不平衡引起的强大的反向旋转涡流对弯曲处的Θ= 67.5°。但是,在θ= 90°核心涡流形成之后,涡流对分解为两个单元格模式,并且在次要向量图中清晰地发现了沿着弯曲对称面的次要流动方向的反转。在Θ= 67.5°和Θ= 90°进入弯头时,由于二次流的破裂,朝弯头内部的纵向速度形成了一个较大的“槽”。在弯道中,平均纵向速度分量在θ= 90°之后几乎没有变化,但二次流从未达到完全展开的状态。在径向和周向应力中观察到类似的行为。

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