Flow around a circular cylinder near a plane boundary

斯特劳哈尔数 圆柱 旋涡脱落 圆柱绕流势流 雷诺数 流动可视化 风洞 唤醒 机械 边界层 物理 材料科学 光学 水洞 分流板 涡流 几何学 流量(数学) 湍流 数学
作者
Peter Bearman,M M Zdravkovich
出处
期刊:Journal of Fluid Mechanics [Cambridge University Press]
卷期号:89 (1): 33-47 被引量:549
标识
DOI:10.1017/s002211207800244x
摘要

The flow around a circular cylinder placed at various heights above a plane boundary has been investigated experimentally. The cylinder spanned the test section of a wind tunnel and was aligned with its axis parallel to a long plate and normal to the free stream. It was placed 36 diameters downstream of the leading edge of the plate and its height above the plate was varied from zero, the cylinder lying on the surface, to 3·5 cylinder diameters. The thickness of the turbulent boundary layer on the plate at the cylinder position, but with it removed from the tunnel, was equal to 0·8 of the cylinder diameter. Distributions of mean pressure around the cylinder and along the plate were measured at a Reynolds number, based on cylinder diameter, of 4·5 × 10 4 . Spectral analysis of hot-wire signals demonstrated that regular vortex shedding was suppressed for all gaps less than about 0·3 cylinder diameters. For gaps greater than 0·3 the Strouhal number was found to be remarkably constant and the only influence of the plate on vortex shedding was to make it a more highly tuned process as the gap was reduced. Flow-visualization experiments in a smoke tunnel revealed the wake structure at various gap-to-diameter ratios.
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