EXPERIMENTAL INVESTIGATION OF FLOW RESPONSE TO STATIONARY DISTURBANCE IN ROTATING-DISK FLOW

M. E. Siddiqui
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Abstract

Three-dimensional boundary-layer flow is well known for its abrupt and sharp transition from laminar to turbulent regime. The presented study is a first attempt to achieve the target of delaying the natural transition to turbulence. The behaviour of two different shaped and sized stationary disturbances (in the laboratory frame) on the rotating-disk boundary layer flow is investigated. These disturbances are placed at dimensionless radial location (Rf = 340) which lies within the convectively unstable zone over a rotating-disk. Mean velocity profiles were measured using constant-temperature hot-wire anemometry. By careful analysis of experimental data, the instability of these disturbance wakes and its estimated orientation within the boundary-layer were investigated.
转盘式流动中稳态扰动对流动响应的实验研究
三维边界层流动以其从层流到湍流的急剧转变而著称。本研究是实现延迟向湍流自然过渡目标的第一次尝试。研究了两种不同形状和大小的静止扰动(在实验室框架下)对旋转圆盘边界层流动的影响。这些扰动被放置在无量纲的径向位置(Rf = 340),它位于旋转圆盘上方的对流不稳定区内。采用恒温热线风速法测量平均速度剖面。通过对实验数据的仔细分析,研究了这些扰动尾迹的不稳定性及其在边界层内的估计方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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