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首页> 外文期刊>Applied Mathematical Modelling >Coupling of a one-dimensional river routing model and a three-dimensional ocean model to predict overbank flows in a complex river-ocean system
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Coupling of a one-dimensional river routing model and a three-dimensional ocean model to predict overbank flows in a complex river-ocean system

机译:一维河道模型与三维海洋模型的耦合,以预测复杂的河海系统中的过岸流量

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摘要

River-ocean coupled models were developed to calculate overbank flows in a complex river-coastal ocean system comprising the Wu River and the adjacent coastal ocean of central Taiwan. The hydrodynamic quantities were exchanged between one-dimensional and three-dimensional domains during runtime to resolve the real-time exchange and interaction between the coastal waters and the river system. The coupled model was calibrated and verified with the observed water levels using data from three typhoon events. The results indicate a reasonable agreement between the model simulations and the observed data. The model was then used to calculate hydrographs of the overbank flow caused by Typhoon Kalmaegi, which occurred in 2008. The simulated overbank flows quantitatively agreed with the reported information. We also demonstrated that most of the overbank flows occurred at the upper reaches of the tributaries of the Wu River system, except for the tributary in the Fazi River.
机译:开发了河-海耦合模型来计算复杂的河-沿海海洋系统中的河床流量,该系统包括吴河和台湾中部附近的沿海海洋。在运行期间,在一维和三维域之间交换了水动力量,以解决沿海水域与河流系统之间的实时交换和相互作用。使用来自三个台风事件的数据对耦合模型进行校准,并使用观测到的水位进行验证。结果表明,模型模拟与观测数据之间存在合理的一致性。然后,使用该模型来计算2008年台风“卡尔迈吉”造成的溢流流量的水文图。模拟的溢流流量在数量上与所报告的信息相符。我们还证明,除了法子河的支流外,大多数溢流都发生在吴河支流的上游。

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