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Near Wake of a Horizontal Circular Cylinder in Stably Stratified Flows

机译:稳定层流中水平圆柱的近尾流

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The near wake of a circular cylinder in linearly stratified flows of finite depth was experimentally investigated by means of flow visualization and measurements of vortex shedding frequencies, at Reynolds numbers 3.5 × 103-1.2 × 104 and stratification parameters kd 0-2.0. The non-dimensional parameter kd is defined as kd = Nd/U, where N is the Brunt-Vaisala frequency, d, the diameter of the cylinder, and U, the approaching flow velocity. The study demonstrates that as kd increases from zero, the vortex shedding from a circular cylinder progressively strengthens, while the Strouhal number gradually becomes lower than that for homogeneous flow. This phenomenon can be explained by the effect of the increasingly stable stratification which enhances the two-dimensionality of the near-wake flow of the circular cylinder; the enhanced two-dimensionality of the flow strengthens the roll-up of the separated shear layer. Above a certain value of kd, however, vortex formation and shedding are strongly suppressed and the Strouhal number rises sharply. This observation is attributable to the development of stationary lee waves downstream of the circular cylinder because the lee waves strongly suppress vertical fluid motions.
机译:通过流动可视化和测量涡旋脱落频率(雷诺数为3.5×103-1.2×104且分层参数kd 0-2.0),实验研究了有限深度线性分层流动中圆柱体的近尾流。无量纲参数kd定义为kd = Nd / U,其中N是Brunt-Vaisala频率,d是圆柱体的直径,U是接近的流速。研究表明,随着kd从零增加,从圆柱体脱落的涡流逐渐增强,而Strouhal数逐渐变得低于均匀流动的涡流数。这种现象可以用逐渐稳定的分层效应来解释,这种分层增强了圆柱体近尾流的二维性。增强的二维流动增强了分离剪切层的卷起。但是,超过kd的某个值时,强烈抑制了涡旋的形成和脱落,斯特劳哈尔数急剧上升。该观察结果归因于圆柱下游的静回风的形成,因为回风强烈地抑制了垂直流体的运动。

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