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Modelling the effect of bottom sediment transport on beach profiles and wave set-up

机译:模拟底部泥沙运移对海滩剖面和波浪形成的影响

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In this paper we augment the wave-averaged mean field equations commonly used to describe wave set-up and wave-induced mean currents in the near-shore zone, with an empirical sediment flux law depending only on the wave-induced mean current and mean total depth. This model allows the bottom to evolve slowly in time, and is used to examine how sediment transport affects the beach profile and wave set-up in the surf zone. We show that the mean bottom depth in the surf zone evolves according to a simple wave equation, whose solution predicts that the mean bottom depth decreases and the beach is replenished. Further, we show that if the sediment flux law also allows for a diffusive dependence on the beach slope then the simple wave equation is replaced by a nonlinear diffusion equation which allows a steady-state solution, the equilibrium beach profile.
机译:在本文中,我们通过经验性的泥沙通量定律来扩展通常用于描述近岸区域的波浪形成和波浪诱发的平均水流的平均波浪平均场方程,该公式仅取决于波浪诱发的平均电流和平均总深度。该模型允许底部随时间缓慢演化,并用于检查沉积物迁移如何影响冲浪区的海滩轮廓和波浪形成。我们显示,冲浪区中的平均底部深度根据一个简单的波动方程演化,其解预测平均底部深度减小并且海滩得到补充。此外,我们表明,如果沉积物通量定律也允许对海滩坡度的扩散依赖性,那么简单的波动方程将被非线性扩散方程所代替,该非线性扩散方程允许稳态解,即平衡海滩轮廓。

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