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Development and validation of a coastal surge and inundation prediction system

机译:沿海潮汐和洪水预报系统的开发和验证

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The development and validation of a coastal storm surge and inundation prediction system for operational use by the United States Navy is detailed. The system consists of the Delft3D-FLOW hydrodynamic model coupled with the Delft3D-WAVE wave model and a graphical user interface, the Delft Dashboard. The coupled system is used to model storm surge and inundation produced by Hurricane Ike along the Gulf of Mexico coast in September 2008. The hydrodynamic model is run in 2D depth averaged mode to develop a “best” simulation. The best simulation is developed after hundreds of test runs and it consists of a blended elevation dataset for use as the model bathymetry and topography, a spatially varying Manning's N coefficient, multiple nests, atmospheric forcing from re-analysis wind and pressure fields with directional land masking, an initial water level of 0.11 m, an updated air — sea drag coefficient, and dynamically coupled flow and wave fields. The simulation results compare very favorably with observed water level. To assess the system in an operational forecast environment, the system's sensitivity to the elevation dataset, bottom roughness, domain resolution, atmospheric forcing, drag coefficient, initial water level, and wave coupling was investigated and found to vary widely depending on the component.
机译:详细介绍了美国海军用于作战使用的沿海风暴潮和洪水预报系统的开发和验证。该系统由Delft3D-FLOW流体力学模型,Delft3D-WAVE波浪模型以及图形用户界面Delft仪表板组成。该耦合系统用于对2008年9月墨西哥湾沿岸的艾克飓风造成的风暴潮和洪水进行建模。流体动力学模型在2D深度平均模式下运行,以开发“最佳”模拟。最好的模拟是在数百次测试运行后开发的,它包括一个混合的海拔数据集(用作模型测深和地形图),一个空间变化的曼宁N系数,多个嵌套,重新分析风和压力场的大气强迫(有方向性土地)遮罩,0.11 m的初始水位,更新的空气-海阻力系数以及动态耦合的流场和波场。模拟结果与观察到的水位非常相称。为了评估运行预测环境中的系统,研究了系统对海拔数据集,底部粗糙度,区域分辨率,大气强迫,阻力系数,初始水位和波耦合的敏感性,发现其随组件的不同而有很大差异。

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