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首页> 外文期刊>Journal of Hydraulic Engineering >Modeling Flow in an Open Channel with Heterogeneous Bed Roughness
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Modeling Flow in an Open Channel with Heterogeneous Bed Roughness

机译:在具有非均质床粗糙度的明渠中模拟流

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摘要

Physical and numerical simulations of open channel flow over a heterogeneously roughened bed are examined. The velocity field is mapped at four different cross sections by using an acoustic Doppler velocimeter and the boundary shear stress obtained from both the velocity data and application of a Preston tube. These data illustrate that in the current arrangement the roughness elements dominate the physics of the flow and act as a source of vorticity, which is initially manifested as local boundary shear stress and, in turn, affects the secondary flow structures and momentum transfer in the channel. This paper presents the first attempt at using the Shiono-Knight method to model velocity and boundary shear stress distributions in a heterogeneous open channel. Appropriate advice concerning values of calibration parameters and discretization of the cross section is given. The combined physicalumerical approach provides an insight into the changing properties of the flow structure within a nonuniform roughness environment and will be of use to environmental regulators and river managers and academics working in the area.
机译:考察了非均质粗糙床上明渠水流的物理和数值模拟。使用声学多普勒测速仪将速度场映射到四个不同的横截面,并从速度数据和普雷斯顿管的应用获得边界剪切应力。这些数据说明,在当前的布置中,粗糙度元素支配着流体的物理性质,并充当涡旋的源头,最初表现为局部边界切应力,进而影响通道中的二次流结构和动量传递。 。本文提出了使用Shiono-Knight方法对非均质明渠中速度和边界切应力分布进行建模的首次尝试。给出有关校准参数值和横截面离散的适当建议。物理/数值相结合的方法可提供对非均匀粗糙度环境中流动结构变化特性的深入了解,并将被该地区的环境监管者,河流管理者和学者使用。

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