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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Numerical investigation of vortex shedding past a finite circular cylinder mounted on a flat plate
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Numerical investigation of vortex shedding past a finite circular cylinder mounted on a flat plate

机译:涡旋流经安装在平板上的有限圆柱体的数值研究

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Flow past a circular cylinder mounted on a flat plate normal to the flow direction is numerically simulated. Three-dimensional mass and momentum conservation equations are solved to obtain the detailed spatio-temporal dynamics of wake vortices revealed through the velocity and pressure data. Particular attention is focused on the junction between the flat plate and the cylindrical cross-section, which is well known to be a rich source of three-dimensional vortical structures. The wake-boundary layer interaction region generates necklace vortices, which are popularly known as horseshoe vortices. The effect of spanwise height (H/D) of the cylinder on these vortices and their unsteady wake characteristics are investigated. The forces acting on the cylinder and the Strouhal periodicities are validated for Re=200, apart from presenting qualitative features, such as streamlines and vorticity contours. The aspect ratio of the cylinder is found to have predominant influence on the primary and secondary vortex structures. Streakline visualization is developed to study the spatio-temporal dynamics of interaction between the wake and the boundary-layer. An assessment of the two types of boundary conditions, viz., free-slip and no-slip (the latter due to bed friction) are investigated. Vortex shedding is found to be completely suppressed for smaller aspect ratios (H/D)≤1.0, with a stabilized flow pattern in the aft of the cylinder, while it persists for H/D>1.0.
机译:数值模拟流过垂直于流动方向安装在平板上的圆柱体的流动。求解三维质量和动量守恒方程,以获取通过速度和压力数据揭示的尾流的详细时空动力学。特别注意的是平板和圆柱横截面之间的接合处,众所周知,这是三维涡旋结构的丰富来源。尾流-边界层相互作用区域产生项链涡流,通常被称为马蹄形涡流。研究了圆柱体的翼展方向高度(H / D)对这些涡旋及其非稳定尾流特性的影响。除呈现定性特征(例如流线和涡度轮廓)外,作用在圆柱体上的力和Strouhal周期性的力均已验证Re = 200。发现圆柱的长宽比对主要和次要涡流结构有主要影响。条纹可视化被开发来研究尾流和边界层之间相互作用的时空动力学。研究了两种边界条件的评估,即自由滑移和不滑移(后者是由于床层摩擦所致)。对于较小的宽高比​​(H / D)≤1.0,发现涡流脱落被完全抑制,在圆柱体的尾部具有稳定的流动模式,而当H / D> 1.0时,涡流持续存在。

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