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Modeling Sediment Bypassing around Idealized Rocky Headlands

机译:绕理想岩石岬角绕过泥沙的建模

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Alongshore sediment bypassing rocky headlands remains understudied despite the importance of characterizing littoral processes for erosion abatement, beach management, and climate change adaptation. To address this gap, a numerical model sediment transport study was developed to identify controlling factors and mechanisms for sediment headland bypassing potential. Four idealized headlands were designed to investigate sediment flux around the headlands using the process-based hydrodynamic model Delft-3D and spectral wave model SWAN. The 120 simulations explored morphologies, substrate compositions, sediment grain sizes, and physical forcings (i.e., tides, currents, and waves) commonly observed in natural settings. A generalized analytical framework based on flow disruption and sediment volume was used to refine which factors and conditions were more useful to address sediment bypassing. A bypassing parameter was developed for alongshore sediment flux between upstream and downstream cross-shore transects to determine the degree of blockage by a headland. The shape of the headland heavily influenced the fate of the sediment by changing the local angle between the shore and the incident waves, with oblique large waves generating the most flux. All headlands may allow sediment flux, although larger ones blocked sediment more effectively, promoting their ability to be littoral cell boundaries. The controlling factors on sediment bypassing were determined to be wave angle, size, and shape of the headland, and sediment grain size.
机译:尽管表征沿岸过程对减轻侵蚀,改善海滩管理和适应气候变化的重要性很重要,但绕过岩石岬角的沿岸沉积物仍然未被充分研究。为了解决这一差距,开发了一个数值模型泥沙输送研究,以识别泥沙岬角绕过潜力的控制因素和机理。使用基于过程的水动力模型Delft-3D和谱波模型SWAN,设计了四个理想的岬角来调查岬角周围的泥沙通量。 120次模拟探索了在自然环境中通常观察到的形态,底物成分,沉积物粒度和物理强迫(即潮汐,水流和波浪)。使用基于流量扰动和沉积物体积的通用分析框架来完善哪些因素和条件对于解决沉积物绕行更为有用。为上游和下游跨岸样带之间的近岸沉积物通量开发了一个绕过参数,以确定陆岬的阻塞程度。岬角的形状通过改变海岸和入射波之间的局部角度,严重影响了沉积物的命运,其中倾斜的大波产生最大的通量。所有岬角都可以允许沉积物通量,尽管较大的岬角可以更有效地阻止沉积物,从而提高其成为沿海细胞边界的能力。确定绕过沉积物的控制因素是波角,岬角的大小和形状以及沉积物的粒径。

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