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Wall-Wake Flows Downstream of a Sphere Placed on a Plane Rough Wall

机译:放置在平面粗糙壁上的球体下游的壁流流动

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摘要

The time-averaged characteristics of turbulent wall-wake flows downstream of a sphere placed on a rough wall are studied. The profiles of the defect of streamwise velocity, Reynolds shear stress, and turbulence intensities exhibit some degree of similarities when they are scaled by their respective peak defect values. For the velocity defect profiles, the vertical distances are scaled by the height of the location of the half-peak velocity defect. However, for the defect profiles of the Reynolds shear stress and the turbulence intensities, the vertical distances are scaled by the height of the location of the half-peak Reynolds shear stress defect. The magnitudes of the peak defect of all the quantities diminish with the distance downstream of the sphere characterizing the recovery of their undisturbed profiles. Additionally, the theoretical similarity solution for the velocity defect profiles is obtained. The third-order correlations imply that in the inner layer of wall wakes, a streamwise acceleration is prevalent and associated with a downward flux, suggesting sweeps. In contrast, in the outer layer, a streamwise deceleration exists and is associated with an upward flux, suggesting ejections. The profiles of the energy budget show that the turbulent and pressure energy diffusions oppose each other. The turbulent production has a positive peak, and the pressure energy diffusion has a negative peak, indicating a large gain in turbulence production in the wall-wake flows. The quadrant analysis confirms that in wall-wake flows, sweeps are the governing mechanism resulting from an inrush of fluid streaks. The bursting events have shorter duration, but they are more frequent than those in upstream.
机译:研究了置于粗糙壁上的球体下游的湍流壁-尾流的时间平均特性。当按各自的峰值缺陷值进行标度时,沿流速度,雷诺剪切应力和湍流强度的缺陷分布图显示出一定程度的相似性。对于速度缺陷轮廓,垂直距离按半峰速度缺陷位置的高度缩放。但是,对于雷诺剪切应力和湍流强度的缺陷轮廓,垂直距离是根据半峰雷诺剪切应力缺陷的位置高度来缩放的。所有数量的峰值缺陷的幅度随着球体下游距离的减小而减小,这代表了其未受干扰的轮廓的恢复。此外,获得了速度缺陷轮廓的理论相似性解决方案。三阶相关性表明,在壁尾流的内层中,普遍存在着水流加速度,并与向下的通量相关联,表明存在波及。相反,在外层中,存在沿流的减速并且与向上的通量相关联,表明喷射。能量收支的分布图表明,湍流和压力能量扩散彼此相对。湍流产生具有正峰值,而压力能量扩散具有负峰值,表明壁-尾流中湍流产生的增益大。象限分析证实,在壁流中,扫掠是流体条纹涌入的主导机制。突发事件的持续时间较短,但比上游事件更频繁。

著录项

  • 来源
    《Journal of Hydraulic Engineering》 |2011年第10期|p.1173-1189|共17页
  • 作者单位

    Dept. of Civil Engineering, Indian Institute of Technology, Kharagpur 721302, West Bengal, India;

    Dept. of Civil Engineering, Indian Institute of Technology, Kharagpur 721302, West Bengal, India;

    Center for Theoretical Studies, Indian Institute of Technology, Kharagpur 721302, West Bengal, India;

    School of Engineering, Design and Technology, Univ. of Bradford, Bradford BD7 1DP, UK;

    Instituto de Agriculture Sostenible, Consejo Super-ior de Investigaciones Cientificas, Finca Alameda del Obispo, E-14080,Cordoba, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    flow characteristics; hydraulics; open-channel flow; stream beds; turbulent flow; wakes;

    机译:流动特性液压系统明渠流动流床湍流;唤醒;

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