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Modelling of sediment transport and morphological evolution under the combined action of waves and currents

机译:波浪和水流共同作用下的泥沙运移和形态演化模拟

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Coastal defence structures are often constructed to prevent beach erosion. However, poorly designed structures may cause serious erosion problems in the downdrift direction. Morphological models are useful tools to predict such impacts and assess the efficiency of defence structures for different scenarios. Nevertheless, morphological modelling is still a topic under intense research effort. The processes simulated by a morphological model depend on model complexity. For instance, undertow currents are neglected in coastal area models (2DH), which is a limitation for simulating the evolution of beach profiles for long periods. Model limitations are generally overcome by predefining invariant equilibrium profiles that are allowed to shift offshore or onshore. A more flexible approach is described in this paper, which can be generalised to 3-D models. The present work is based on the coupling of the MOHID modelling system and the SWAN wave model. The impacts of different designs of detached breakwaters and groynes were simulated in a schematic beach configuration following a 2DH approach. The results of bathymetry evolution are in agreement with the patterns found in the literature for several existing structures. The model was also tested in a 3-D test case to simulate the formation of sandbars by undertow currents. The findings of this work confirmed the applicability of the MOHID modelling system to study sediment transport and morphological changes in coastal zones under the combined action of waves and currents. The same modelling methodology was applied to a coastal zone (Costa da Caparica) located at the mouth of a mesotidal estuary (Tagus Estuary, Portugal) to evaluate the hydrodynamics and sediment transport both in calm water conditions and during events of highly energetic waves. The MOHID code is available in the GitHub repository.
机译:沿海防御结构通常是为了防止海滩侵蚀而建造的。但是,设计不良的结构可能会在向下漂移方向上引起严重的腐蚀问题。形态模型是预测此类影响并评估不同情况下防御结构效率的有用工具。然而,形态建模仍然是经过大量研究工作的话题。形态模型模拟的过程取决于模型的复杂性。例如,在沿海地区模型(2DH)中忽略了底流,这是长期模拟海滩剖面演变的限制。通常通过预定义允许在海上或陆上移动的不变平衡曲线来克服模型的局限性。本文介绍了一种更灵活的方法,该方法可以推广到3-D模型。目前的工作是基于MOHID建模系统和SWAN波浪模型的耦合。按照2DH方法,在示意性海滩配置中模拟了不同设计的防波堤和防波堤的影响。测深法演变的结果与文献中几种现有结构的模式一致。该模型还在3-D测试用例中进行了测试,以模拟由底流形成的沙洲。这项工作的发现证实了MOHID建模系统在研究波浪和水流共同作用下沿海地区的泥沙输运和形态变化方面的适用性。相同的建模方法应用于位于中生河口(葡萄牙塔古斯河口)口的沿海地区(哥斯达黎加卡帕里卡),以评估在平静水域条件下和高能波浪事件中的水动力和泥沙输送。 MOHID代码在GitHub存储库中可用。

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