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首页> 外文期刊>Journal of hydraulic research >A circular cylinder in the main-channel/floodplain interface of a compound channel: effect of the shear flow on drag and lift
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A circular cylinder in the main-channel/floodplain interface of a compound channel: effect of the shear flow on drag and lift

机译:复合通道主流通道/泛洪叶接口中的圆柱形:剪切流对拖曳的影响

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摘要

The interface between the main channel and the floodplain of a compound channel is often populated by trees or buildings that normally remain emergent during floods. This study investigates how drag on an emergent cylinder is affected by the shear flow that develops at the interface. The experimental set-up features a circular cylinder at the interface of a straight compound channel under uniform flow conditions. The integral form of the equation of conservation of momentum was used to calculate the magnitude and direction of the time-averaged drag force per unit submerged-length of the cylinder. All terms were experimentally determined, except for those associated with fluid interaction with the cylinder. The same method was also applied to a cylinder under symmetrical flow conditions. It is concluded that the existence of the shear layer leads to an asymmetrical drag force and to a reduced drag coefficient.
机译:主要通道和复合渠道的洪泛区之间的界面通常由树木或建筑物填充,通常在洪水期间通常保持突出。本研究调查了如何在突出缸体上的拖动受到在界面中开发的剪切流程的影响。实验装置在均匀的流动条件下的直线化合物通道的界面处具有圆柱形。动量守恒等方程的整体形式用于计算每单位淹没气缸的时间平均拖曳力的幅度和方向。除了与圆柱体的流体相互作用相关的那些之外,实验确定所有术语。在对称流动条件下也将相同的方法施加到圆柱体上。结论是,剪切层的存在导致不对称的拖曳力并降低阻力系数。

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