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Sensitivity of Flow and Sediment Transport in Meandering Rivers to Scale Effects and Flow Rate

机译:曲流河水沙输送对规模效应和流量的敏感性

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摘要

Sensitivity of flow and sediment transport in a meandering river to variations in scaling and flow rate was studied. The FLUENT~(TM) code was used for evaluating the river flow characteristics, including the mean velocity field and the Reynolds stress components, as well as for particle trajectory analysis. Particular attention was given to the sensitivity of the sedimentation patterns of different size particles in the river bend for various scales. Simulation studies were performed for both a model river and a physical river. The physical river was geometrically similar to the model river, with a scaling ratio of 1:100, but with identical Froude number. The flow and particle deposition patterns in the physical and model rivers were compared. It was shown that the mean flow quantities exhibit dynamic similarity, but the turbulence parameters and the particle sedimentation features in the physical river were different from the model. The secondary flows and particle transport patterns were also found to be sensitive to variation in the scale and flow rate.
机译:研究了蜿蜒河流中水流和泥沙输送对水垢和流量变化的敏感性。 FLUENT〜(TM)代码用于评估河流流量特征,包括平均速度场和雷诺应力分量,以及进行粒子轨迹分析。特别注意了河道中不同大小颗粒的沉积模式对各种尺度的敏感性。对模型河和物理河都进行了模拟研究。物理河在几何学上与模型河相似,缩放比例为1:100,但弗洛德数相同。比较了物理河和模型河中的水流和颗粒沉积模式。结果表明,平均流量具有动态相似性,但物理河流中的湍流参数和颗粒沉降特征与模型不同。还发现二次流和颗粒传输模式对规模和流速的变化敏感。

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