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A simple non-equilibrium bedload transport equation for the formation of dune in a shallow-water flow over an erodible bed

机译:一种简单的非平衡床单输送方程,用于在浅水中形成沙丘,在浅水床上流动

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In this work, we consider the long-standing problem of capturing dune formation in an erodible-bed channel at subcritical speed by using a reduced order model of depth-averaged equations. The pioneering study by Reynolds [1] showed that the standard Saint-Venant-Exner equations are unconditionally stable at subcritical Froude number. Hence, the use of depthaveraged flow equations, which are commonly used by the hydraulic community, prevents the formation of bedforms as dunes. Recently, Canada-Pereira & Bohorquez [2] have proposed a simple sediment transport formulation able to capture the formation of dune when coupled with the Saint-Venant equations. We replace the standard Exner equation with a non-equilibrium sediment transport equation that includes the following necessary ingredients: first, a phase shift in the particle entrainment rate; second, a particle diffusivity and an eddy viscosity. Subsequently, we solve the linear stability problem of an erodible-bed channel and show that the neutral curve properly captures the bed instability both in subcritical regime (i.e. dune) and supercritical flow (i.e. antidune and roll wave). Finally, we corroborate the capabilities of the model by means of non-linear numerical simulations which reproduce the growth of dune and antidune in agreement with experiments.
机译:在这项工作中,我们考虑通过使用减少的深度平均方程的阶阶模型在亚临界速度下捕获沙丘形成的长期问题。 Reynolds的开创性研究[1]表明标准的Saint-Venant-Excer方程在亚临界Froude号码下无条件稳定。因此,使用液压群落通常使用的深度流动方程的使用防止了朝向沙丘的形成。最近,加拿大-Pereira&Bohorquez [2]提出了一种简单的沉积物,能够在与圣文鸣方程联合时捕获沙丘的形成。我们用非平衡沉积物传输方程代替标准的excer方程,包括以下必要的成分:首先,颗粒夹带速率的相移;二,粒子扩散率和涡粘度。随后,我们解决了易蚀床通道的线性稳定性问题,并表明中性曲线适当地在亚临界方案(即,DUNE)和超临界流(即抗动和辊波)中捕获床不稳定性。最后,我们通过非线性数值模拟来证实模型的能力,这些模拟在与实验一致地再现沙丘和防凌的增长。

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