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A Two-phase Numerical Model For Sediment Transport Prediction Under Oscillatory Sheet Flows

机译:振动板流下泥沙运移的两阶段数值模型

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摘要

To predict sediment transport under oscillatory sheet flow condition, especially for fine sand, is still a challenging research subject in coastal engineering. This paper describes a newly-developed numerical model based on two-phase theory with the use of a one-equation turbulence closure, and its applications in predicting fine sediment suspension in near-prototype oscillatory sheet flow conditions. Model results were compared with comprehensive laboratory measurements of flow velocity and sediment concentration under both symmetrical and asymmetrical oscillatory sheet flows from a large-scale water tunnel. Good agreements between the model results and measurements were achieved and the results demonstrated that the model is capable of reproducing detailed characteristics of sediment entrainment process in the sheet flow regime. The comparisons also revealed the fact that the concentration peaks at flow reversal is associated with the strong vertical sediment transport flux in the pickup layer, which has been widely observed in many laboratory experiments. The effects of flow reversal events on total sediment transport were also discussed.
机译:预测在振动板状流动条件下,尤其是细砂条件下的沉积物迁移,在海岸工程中仍然是一个具有挑战性的研究课题。本文描述了一种基于两相理论的新开发的数值模型,该模型使用一方程湍流闭塞技术,并将其应用于预测近原型振动片状流动条件下的细小泥沙悬浮。将模型结果与大型水洞中对称和不对称振荡板流下流速和沉积物浓度的综合实验室测量结果进行了比较。模型结果与测量结果之间取得了良好的一致性,结果表明该模型能够再现薄板流态下泥沙夹带过程的详细特征。比较还揭示了一个事实,即逆流时的浓度峰值与拾取层中较强的垂直沉积物输送通量有关,这一点已在许多实验室实验中广泛观察到。还讨论了逆流事件对总泥沙输送的影响。

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