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Near-Wall Turbulence of Drag Reduction and Promotion in Unsteady Turbulent Pipe Flows

机译:不稳定湍流管流中减阻与促进的近壁湍流

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摘要

An unsteady behavior of the wall-drag, the velocity and the turbulence is experimentally investigated in the unsteady turbulent pipe flow, under several flow conditions with a rapid to slow time-variation and a large distortion of the flow-rate imposed stepwise. The instantaneous wall-shear stress and three-components of instantaneous velocities are simultaneously measured using the HWA technique of a surface hot-wire and a non-orthogonal triple-sensors probe. In the present study, to understand the unsteady behavior of the relation between the wall-drag and the velocity distribution, the unsteady response of the turbulence to the imposed unsteady flow is investigated by analyzing the relation between the unsteady Reynolds stress and the instantaneous velocity fluctuation during the accelerating and decelerating phase. It is found that, near the pipe-wall, the statistical parameter of the phase-average turbulence structure and the phase-average quadrant contribution rate of instantaneous velocity fluctuations to the Reynolds stress are almost similar to those in the steady turbulent flow, although the drag-reduction and the drag-promotion occurs during the accelerating and decelerating phase respectively.
机译:在不稳定的湍流管流中,在几种流动条件下,随着时间的变化从快到慢,并且逐步施加的流速有较大的失真,实验研究了壁板的不稳定行为,速度和湍流。使用表面热线和非正交三传感器探头的HWA技术同时测量瞬时壁切应力和瞬时速度的三个分量。在本研究中,为了解壁阻力和速度分布之间的非稳态行为,通过分析非稳态雷诺应力与瞬时速度波动之间的关系,研究了湍流对非稳态流动的非稳态响应。在加速和减速阶段。研究发现,在管壁附近,尽管湍流的平均速度和平均湍流对雷诺应力的统计参数以及瞬时速度波动对雷诺应力的平均相象限贡献率几乎相同。减阻和增阻分别发生在加速和减速阶段。

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