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首页> 外文期刊>Applied Ocean Research >Process-based model for nearshore hydrodynamics, sediment transport and morphological evolution in the surf and swash zones
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Process-based model for nearshore hydrodynamics, sediment transport and morphological evolution in the surf and swash zones

机译:基于过程的海浪和冲积带近岸水动力,泥沙输送和形态演化模型

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Hydrodynamics and sediment transport in the nearshore zone were modeled numerically taking into account turbulent unsteady flow. The flow field was computed using the Reynolds Averaged Navier-Stokes equations with a k-epsilon turbulence closure model, while the free surface was tracked using the Volume-Of-Fluid technique. This hydrodynamical model was supplemented with a cross-shore sediment transport formula to calculate profile changes and sediment transport in the surf and swash zones. Based on the numerical solutions, flow characteristics and the effects of breaking waves on sediment transport were studied. The main characteristic of breaking waves, i.e. the instantaneous sediment transport rate, was investigated numerically, as was the spatial distribution of time-averaged sediment transport rates for different grain sizes. The analysis included an evaluation of different values of the wave friction factor and an empirical constant characterizing the uprush and backwash. It was found that the uprush induces a larger instantaneous transport rate than the backwash, indicating that the uprush is more important for sediment transport than the backwash. The results of the present model are in reasonable agreement with other numerical and physical models of nearshore hydrodynamics. The model was found to predict well cross-shore sediment transport and thus it provides a tool for predicting beach morphology change.
机译:考虑到湍流非定常流动,对近岸区域的水动力和泥沙输送进行了数值模拟。使用具有k-ε湍流闭合模型的雷诺平均Navier-Stokes方程计算流场,同时使用“体积-流体”技术跟踪自由表面。该流体力学模型补充了跨岸泥沙运移公式,以计算轮廓变化和海浪和冲积带中的泥沙运移。在数值解的基础上,研究了水流特征和破碎波对泥沙输送的影响。数值研究了破碎波的主要特征,即瞬时泥沙输送速率,以及不同粒度的时均泥沙输送速率的空间分布。该分析包括对波动摩擦系数的不同值的评估以及表征上冲和反冲的经验常数。发现上冲比逆洗引起更大的瞬时输送速率,表明上冲比逆洗对沉积物的输送更重要。本模型的结果与近岸水动力学的其他数值和物理模型合理地吻合。该模型被发现可以预测跨海岸沉积物的运移,因此为预测海滩形态变化提供了一种工具。

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