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Integrated modeling of flood flows and tidal hydrodynamics over a coastal floodplain

机译:沿海洪泛区洪水流量和潮汐水动力的综合建模

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The interactions of physical processes between estuaries and upstream river floodplains are of great importance to the fish habitats and ecosystems in coastal regions. Traditionally, a hydraulic analysis of floodplains has used one- or two-dimensional models. While this approach may be sufficient for planning the engineering design for flood protection, it is inadequate when floodwaters inundate the floodplain in a complex manner. Similarly, typical estuarine and coastal modeling studies do not consider the effect of upstream river floodplains because of the technical challenge of modeling wetting and drying processes in floodplains and higher bottom elevations in the upstream river domain. While various multi-scale model frameworks have been proposed for modeling the coastal oceans, estuaries, and rivers with a combination of different models, this paper presents a modeling approach for simulating the hydrodynamics in the estuary and river floodplains, which provides a smooth transition between the two regimes using an unstructured-grid, coastal ocean model. This approach was applied to the Skagit River estuary and its upstream river floodplain of Puget Sound along the northwest coast of North America. The model was calibrated with observed data for water levels and velocities under low-flow and high-flood conditions. This study successfully demonstrated that a three-dimensional estuarine and coastal ocean model with an unstructured-grid framework and wetting-drying capability can be extended much further upstream to simulate the inundation processes and the dynamic interactions between the estuarine and river floodplain regimes.
机译:河口与上游河漫滩之间物理过程的相互作用对沿海地区的鱼类生境和生态系统具有重要意义。传统上,洪泛区的水力分析使用一维或二维模型。虽然这种方法可能足以规划防洪工程设计,但当洪水以一种复杂的方式淹没泛滥平原时,这种方法是不够的。同样,由于对洪泛区和上游河域底部较高的海拔地区的湿润和干燥过程进行建模的技术挑战,典型的河口和海岸建模研究并未考虑上游河漫滩的影响。虽然已经提出了各种多尺度模型框架,以结合不同的模型对沿海海洋,河口和河流进行建模,但本文提出了一种用于模拟河口和河漫滩的水动力的建模方法,从而可以在河口和河流漫滩之间实现平稳过渡。这两个政权使用的是非结构化网格的沿海海洋模型。该方法已应用于斯卡吉特河河口及其沿北美西北海岸的普吉特海湾上游河滩。使用在低流量和高洪水条件下的水位和速度的观测数据对模型进行校准。这项研究成功地证明,具有非结构化网格框架和湿润干燥能力的三维河口和沿海海洋模型可以进一步向上游扩展,以模拟淹没过程以及河口与河漫滩体系之间的动态相互作用。

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