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Floating grid characteristics method for unsteady flow over a mobile bed

机译:流动床上非定常流动的浮栅特性方法

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In this paper, we present a new application of the method of characteristics (MOC) for the 1D simulation of unsteady flow over a mobile bed. The method is based on the floating grid-of-characteristics approach, which here is amended to take account of the more complex structure of the field of characteristics inherent in the morphodynamics (compared to those for hydro- or gas dynamics). Due to the relative simplicity of the algorithm the technique is particularly well suited to waves moving into a downstream reach that is initially dry. As with all MOC schemes the approach is also attractive because it reveals the underlying (morpho)dynamics as the solution progresses. The mathematical model considered here is based on the depth averaged non-linear shallow water equations directly coupled to a bed update (Exner) equation. Closure is obtained using a simple sediment flux relation. The technique described allows the study of fully coupled sediment transport problems and the associated hydro- and morphodynamic evolution. Numerical results are presented for the evolution of a sand dune in a tidal flow as well as the wet-dry dam-break problem on both a fixed and mobile bed. Results compare extremely well with the analytical or quasi-analytical solutions for the problems presented.
机译:在本文中,我们介绍了特征方法(MOC)在移动床上非恒定流动的一维模拟中的新应用。该方法基于浮动特征网格方法,在此对其进行了修改,以考虑到形态动力学固有的特性领域(与流体动力学或气体动力学相比)更为复杂的结构。由于算法的相对简单性,该技术特别适合于波浪移动到最初干燥的下游范围。与所有MOC方案一样,该方法也很吸引人,因为随着解决方案的发展,它揭示了潜在的(形态)动力学。这里考虑的数学模型基于直接与床更新(Exner)方程耦合的深度平均非线性浅水方程。使用简单的沉积物通量关系即可获得封闭性。所描述的技术可以研究完全耦合的泥沙运移问题以及相关的水动力和形态动力演化。数值结果给出了潮汐流中沙丘的演变以及固定床和移动床的干式溃坝问题。结果与所提出问题的解析或准解析解决方案相比非常好。

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