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Effects of estuarine and fluvial processes on sediment transport over deltaic tidal flats

机译:河口和河床过程对三角洲滩涂输沙的影响

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Tidal flats at a river mouth feature estuarine and fluvial processes that distinguish them from tidal flats without river discharge. We combine field observations and a numerical model to investigate hydrodynamics and sediment transport on deltaic tidal flats at the mouth of the Skagit River, in Puget Sound, WA, during the spring freshet. River discharge over tidal flats supplies a mean volume flux, freshwater buoyancy, and suspended sediment. Despite the shallow water depths, strong horizontal density fronts and stratification develop, resulting in a baroclinic pressure gradient and tidal variability in stratification that favor flood-directed bottom stresses. In addition to these estuarine processes, the river discharge during periods of low tide drains through a network of distributary channels on the exposed tidal flats, with strongly ebb-directed stresses. The net sediment transport depends on the balance between estuarine and fluvial processes, and is modulated on a spring-neap time scale by the tides of Puget Sound. We find that the baroclinic pressure gradient and periodic stratification enhance trapping of sediment delivered by the river on the tidal flats, particularly during neap tides, and that sediment trapping also depends on settling and scour lags, particularly for finer particles. The primary means of moving sediment off of the tidal flats are the high velocities and stresses in the distributary channels during late stages of ebbs and around low tides, with sediment export predominantly occurring during spring low tides that expose a greater portion of the flats. The 3-d finite volume numerical model was evaluated against observations and had good skill overall, particularly for velocity and salinity. The model performed poorly at simulating the shallow flows around low tides as the flats drained and river discharge was confined to distributary channels, due in part to limitations in grid resolution, seabed sediment and bathymetric data, and the wetting-and-drying scheme. Consequently, the model predicted greater sediment retention on the flats than was observed.
机译:河口的滩涂具有河口和河床作用,使它们与没有河流排放的滩涂区分开。我们结合现场观察和数值模型来研究春季新生期间在华盛顿州普吉特海湾斯卡吉特河口三角洲潮滩上的水动力和泥沙输送。潮滩上的河流流量提供了平均流量,淡水浮力和悬浮沉积物。尽管水深较浅,但仍形成很强的水平密度前缘和分层,导致斜压梯度和分层中的潮汐变化,从而有利于洪水导向的底应力。除了这些河口过程外,在低潮时期,河流流经裸露的滩涂上的分流河道网络,排水压力很大。沉积物的净迁移量取决于河口与河床过程之间的平衡,并且在普吉特海湾的潮汐作用下,在春季的时间尺度上进行调节。我们发现,斜压梯度和周期性分层增加了河对滩涂输送的沉积物的捕获,特别是在小潮时,并且沉积物的捕获还取决于沉降和冲刷滞后,特别是对于较细的颗粒。将泥沙移出滩涂的主要手段是在潮起潮落的后期和低潮附近的高速度和分流河道中的应力,泥沙出口主要发生在春季低潮期间,使大部分滩涂暴露。针对观察结果评估了3-d有限体积数值模型,并且总体上具有良好的技能,尤其是对于速度和盐度。该模型在模拟低潮时的浅水流方面表现不佳,这是由于单位排水和河流排泄被限制在分配通道内,部分原因是网格分辨率,海底沉积物和测深数据以及干湿方案的限制。因此,该模型预测的泥沙保留量将比所观察到的更大。

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