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Momentum Exchange in Straight Uniform Compound Channel Flow

机译:直线均匀复合通道流动中的动量交换

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摘要

Transverse exchange of momentum between the channel and the floodplain in straight uniform compound channel flow is considered in this paper. This process results in the so-called "kinematic effect," a lowering of the total discharge capacity of a compound channel compared to the case where the channel and the floodplain are considered separately. The mechanisms responsible for the momentum exchange are considered. The transverse shear stress in the mixing region is modeled using a newly developed effective eddy viscosity concept, that contains: (1) the effects of horizontal coherent structures moving on an uneven bottom, taking compression and stretching of the vortices into account and (2) the effects of the three-dimensional bottom turbulence. The model gives a good prediction of the transverse profiles of the streamwise velocity and the transverse shear stress of the flood channel facility experiments. Characteristic features of the lateral profile of the eddy viscosity are also well predicted qualitatively, but in a quantitative sense there is room for improvement. Secondary circulations are shown to be of minor importance in straight uniform compound channel flows.
机译:本文考虑了在直线和均匀复合河道中河道与洪泛区之间的横向动量交换。该过程导致所谓的“运动学效应”,与分别考虑通道和洪泛区的情况相比,复合通道的总放电容量降低了。考虑负责动量交换的机制。使用新开发的有效涡流粘度概念对混合区域中的横向剪切应力进行建模,该概念包含:(1)水平连贯结构在不平坦底部上运动的影响,同时考虑了涡旋的压缩和拉伸,以及(2)三维底部湍流的影响。该模型很好地预测了河道速度横向剖面和洪水通道设施实验的横向切应力。从质量上也可以很好地预测涡流粘度的侧向分布的特征,但是从数量上讲,还有改进的空间。二次循环在直接的均匀复合通道流动中显示出次要的重要性。

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