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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Complexity of the flooding/drying process in an estuarine tidal-creek salt-marsh system: An application of FVCOM
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Complexity of the flooding/drying process in an estuarine tidal-creek salt-marsh system: An application of FVCOM

机译:河口潮汐-盐沼系统中驱水/干燥过程的复杂性:FVCOM的应用

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摘要

The tidal flooding/drying process in the Satilla River Estuary was examined using an unstructured-grid finite-volume coastal ocean model (FVCOM). Driven by tidal forcing at the open boundary and river discharge at the upstream end, FVCOM produced realistic tidal flushing in this estuarine tidal-creek intertidal salt-marsh complex, amplitudes and phases of the tidal wave, and salinity observed at mooring sites and along hydrographic transects. The model-predicted residual flow field is characterized by multiscale eddies in the main channel, which are verified by ship-towed ADCP measurements. To examine the impact of complex coastal geometry on water exchange in an estuarine tidal-creek salt-marsh system, FVCOM was compared with our previous structured-grid finite difference Satilla River Estuary model (ECOM-si). The results suggest that by failing to resolve the complex coastal geometry of tidal creeks, barriers and islands, a model can generate unrealistic flow and water exchange and thus predict the wrong dynamics for this estuary. A mass-conservative unstructured-grid model is required to accurately and efficiently simulate tidal flow and flushing in a complex geometrically controlled estuarine dynamical system.
机译:使用非结构网格有限体积沿海海洋模型(FVCOM),检查了萨蒂拉河河口的潮汐洪水/干燥过程。在开放边界的潮汐强迫和上游端的河流排放的驱动下,FVCOM在该河口-潮间潮间盐沼复合体,潮汐的振幅和相位以及在系泊地点和沿水文观测到的盐度中产生了逼真的潮汐冲刷。样条线。模型预测的残余流场的特征在于主通道中的多尺度涡流,这些涡流已通过船载ADCP测量进行了验证。为了检验河口潮汐-盐沼系统中复杂的海岸几何结构对水交换的影响,将FVCOM与我们先前的结构网格有限差分萨提拉河河口模型(ECOM-si)进行了比较。结果表明,由于无法解决潮汐小溪,屏障和岛屿的复杂沿海几何形状,因此模型可能会产生不切实际的水流和水交换,从而预测该河口的动态变化。需要一个质量守恒的非结构网格模型,以在复杂的几何控制的河口动力学系统中准确有效地模拟潮汐流和潮汐。

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