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Sediment transport and morphodynamics generated by a dam-break swash uprush: Coupled vs uncoupled modeling

机译:溃坝冲刷隆起产生的泥沙运移和形态动力学:耦合与非耦合建模

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The present work analyzes the hydro-morphodynamics characterizing the swash region during the uprush stage. A comparison is illustrated between the sediment transport measured in a series of dam-break experiments and that predicted by the numerical hydro-morphodynamic model of Postacchini et al. (2012). The primary aim is to investigate the differences arising between the weakly coupled or uncoupled model and the measurements, in terms of hydrodynamics, tip celerity and sediment transport. The hydrodynamics are well described by the model and results have been used to calibrate both friction factor and subgrid turbulent viscosity. Comparison of numerically-computed tip celerity with experimental data reveals a fairly good agreement, i.e. a mean error of about 10%, while modeled sediment transport differs by about 40% from the available data. No evident differences are found between results obtained from the coupled and uncoupled model runs (2% for the celerity and 11% for the sediment transport rate at the tip), suggesting that for the specific flow under investigation, at the leading edge of the swash front, hydro-morphological coupling is not an issue of fundamental importance. However, for the special case here of a swash forced by a dam-break, scour occurs at the dam location, and in this case the erosion of the bed is significantly larger in the uncoupled model.
机译:目前的工作分析了上冲阶段斜流区的水动力特征。通过一系列溃坝实验测得的泥沙输运与Postacchini等人的数值水动力模型所预测的输沙输运之间的比较说明了这一点。 (2012)。主要目的是研究弱耦合或非耦合模型与测量之间在流体动力学,尖端速度和沉积物传输方面的差异。该模型很好地描述了流体动力学,结果已用于校准摩擦因数和亚网格湍流粘度。数值计算的尖端速度与实验数据的比较显示出相当好的一致性,即平均误差约为10%,而模拟的沉积物输运与可用数据相差约40%。从耦合和非耦合模型运行获得的结果之间没有发现明显的差异(速度为2%,尖端的泥沙传输速率为11%),这表明对于所研究的特定流量,在斜盘前缘前面,水形态耦合不是根本的问题。但是,在这种特殊情况下,由于溃坝而导致的冲刷,冲刷发生在坝的位置,在这种情况下,在非耦合模型中河床的侵蚀明显更大。

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