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Modelling of cohesive sediment dynamics in tidal estuarine systems: Case study of Tagus estuary, Portugal

机译:潮汐河口系统粘性沉积物动力学模拟:葡萄牙塔霍河口案例研究

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Cohesive sediment dynamics in estuarine systems is a major issue in water quality and engineering problems. Numerical Models can help to assess the complex dynamics of cohesive sediments, integrating the information collected in monitoring studies. Following a numerical approach we investigated the main factors that influence the cohesive sediment dynamics in an estuarine system composed of large mudflats (Tagus estuary, Portugal). After a spin up period of the bottom layer and considering the combined effect of waves and currents on the bottom shear stress, the dynamics of cohesive sediment during the fortnightly and daily erosion sedimentation cycle was properly reproduced by the model. The results of cohesive suspended sediments were validated with data from sixteen monitoring stations located along the estuary and turbidity data measured by two multiparametric probes. The hydrodynamics were previously validated by harmonic analysis and with ADCP data. Although tidal currents are the major cause of cohesive sediment erosion, the results suggest that wind waves also play an important role. The simulated sediment mass involved in the fortnightly tidal cycle was in the same order of magnitude of the annual load from the rivers, as observed in previous studies based on field data. (C) 2014 Elsevier Ltd. All rights reserved.
机译:河口系统中的粘性沉积物动力学是水质和工程问题中的主要问题。数值模型可以帮助评估粘性沉积物的复杂动态,并整合监测研究中收集的信息。根据一种数值方法,我们研究了影响由大型泥滩组成的河口系统(塔霍河口,葡萄牙)中粘性沉积物动力学的主要因素。在底层旋转上升之后,考虑到波浪和水流对底部切应力的综合影响,该模型可以正确地再现每两周和每天的侵蚀沉降周期内的粘性沉积物动力学。利用沿河口分布的十六个监测站的数据验证了粘性悬浮沉积物的结果,并使用了两个多参数探头测得的浊度数据。先前已通过谐波分析和ADCP数据验证了流体力学。尽管潮流是造成粘性沉积物侵蚀的主要原因,但结果表明,风浪也起着重要作用。如先前基于实地数据的研究所观察到的,在每两周的潮汐周期中模拟的沉积物质量与河流年负荷量的数量级相同。 (C)2014 Elsevier Ltd.保留所有权利。

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