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Modeling Bed Evolution Using Weakly Coupled Phase-Resolving Wave Model and Wave-Averaged Sediment Transport Model

机译:利用弱耦合相分辨波模型和波平均泥沙输运模型模拟河床演化

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摘要

In this paper, we propose a model for the simulation of the bed evolution dynamics in coastal regions characterized by articulated morphologies. An integral form of the fully nonlinear Boussinesq equations in contravariant formulation, in which Christoffel symbols are absent, is proposed in order to simulate hydrodynamic fields from deep water up to just seaward of the surf zones. Breaking wave propagation in the surf zone is simulated by integrating the nonlinear shallow water equations with a high-order shock-capturing scheme. The near-bed instantaneous flow velocity and the intra-wave hydrodynamic quantities are calculated by the momentum equation integrated over the turbulent boundary layer. The bed evolution dynamics is calculated starting from the contravariant formulation of the advection-diffusion equation for the suspended sediment concentration in which the advective sediment transport terms are formulated according to a quasi-three-dimensional approach, and taking into account the contribution given by the spatial variation of the bed load transport. The model is validated against several tests by comparing numerical results with experimental data. The ability of the proposed model to represent the sediment transport phenomena in a morphologically articulated coastal region is verified by numerically simulating the long-term bed evolution in the coastal region opposite Pescara harbor (in Italy) and comparing numerical results with the field data.
机译:在本文中,我们提出了一个模型,用于模拟以关节形态为特征的沿海地区的河床演化动力学。为了模拟从深水一直到海浪沿岸的水动力场,提出了一种完全线性的Boussinesq方程的积分形式,其中没有Christoffel符号。通过将非线性浅水方程与高阶震荡捕获方案相结合,模拟了海浪中的碎波传播。通过在湍流边界层上积分的动量方程计算近床面瞬时流速和波内流体动力量。从对流扩散方程的对数公式的悬移式泥沙浓度计算河床演化动力学,其中对流泥沙输运项是根据准三维方法制定的,并考虑了床载运输的空间变化。通过将数值结果与实验数据进行比较,针对多个测试对模型进行了验证。通过数值模拟Pescara港口对面的沿海地区(意大利)的长期河床演化,并将数值结果与现场数据进行比较,验证了所提出模型在形态学明确的沿海地区表示泥沙输运现象的能力。

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