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Modeling the growth and migration of sandy shoals on ebb-tidal deltas

机译:模拟潮汐三角洲上沙滩的生长和迁移

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摘要

Coherent sandy shoals that migrate toward the downdrift coast are observed on many ebb-tidal deltas. In this study, processes that cause the growth and migration of shoals on ebb-tidal deltas are identified. Moreover, the effect of the incident wave energy and the tidal prism of an inlet on the migration speed of these shoals is investigated. For this, a numerical morphodynamic model with an idealized geometric setup is employed. The model computes the bed level evolution due to local erosion and deposition of sand driven by tides and waves. Analysis of model results shows that shoals grow when there is a local imbalance between the bathymetry and the wave conditions, which in this study was imposed by manually breaching the ebb-tidal delta or by adding storms to the wave forcing. There are thresholds for shoal formation that depend on the distribution of the sand and the incident wave energy. Wave refraction over the shoals leads to focusing of wave energy and increased wave energy dissipation around the location of the local minimum water depth. This generates residual currents over the shoal and increased skin friction toward the local minimum water depth, which together create a sand transport pattern that induces the growth and migration of the shoal. Sand transport due to asymmetric waves contributes to keeping the shoal a coherent structure. The shoal migration speed increases with increasing incident wave energy and decreasing tidal prism; this is because tidal residual currents oppose the wave-driven residual currents that cause shoal migration.
机译:在许多潮汐三角洲上都观察到了向下漂流海岸迁移的连贯的沙滩。在这项研究中,确定了导致滩涂在潮汐三角洲上生长和迁移的过程。此外,研究了入射波能量和入口的潮汐棱镜对这些浅滩迁移速度的影响。为此,采用了具有理想几何设置的数值形态动力学模型。该模型计算由于潮汐和波浪驱动的局部砂土侵蚀和沉积而引起的水位变化。对模型结果的分析表明,当测深法和波浪条件之间存在局部不平衡时,浅滩会增大,在本研究中,这是通过手动破坏潮汐三角洲或通过在波浪强迫中添加风暴来施加的。浅滩形成的阈值取决于沙子的分布和入射波能量。浅滩上的波浪折射会导致波浪能集中,并增加局部最小水深附近的波浪能耗散。这会在浅滩上产生残留电流,并向局部最小水深增加皮肤摩擦,从而共同形成沙流模式,从而引起浅滩的生长和迁移。由于不对称波引起的沙粒运输有助于使浅滩保持连贯的结构。浅滩迁移速度随入射波能量的增加和潮汐棱镜的减小而增加。这是因为潮汐剩余电流与引起浅滩迁移的波浪驱动剩余电流相反。

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