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Coupling hydrodynamic models with GIS for storm surge simulation: application to the Yangtze Estuary and the Hangzhou Bay, China

机译:基于GIS的水动力模型与风暴潮模拟的耦合:在长江口和杭州湾的应用

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Storm surge is one of the most serious oceanic disasters. Accurate and timely numerical prediction is one of the primary measures for disaster control. Traditional storm surge models lack of accuracy and time effects. To overcome the disadvantages, in this paper, an analytical cyclone model was first added into the Finite-Volume Coastal Ocean Model (FVCOM) consisting of high resolution, flooding and drying capabilities for 3D storm surge modeling. Then, we integrated MarineTools Pro into a geographic information system (GIS) to supplement the storm surge model. This provided end users with a friendly modeling platform and easy access to geographically referenced data that was required for the model input and output. A temporal GIS tracking analysis module was developed to create a visual path from storm surge numerical results. It was able to track the movement of a storm in space and time. MarineTools Pro’ capabilities could assist the comprehensive understanding of complex storm events in data visualization, spatial query, and analysis of simulative results in an objective and accurate manner. The tools developed in this study further supported the idea that the coupled system could enhance productivity by providing an efficient operating environment for accurate inversion or storm surge prediction. Finally, this coupled system was used to reconstruct the storm surge generated by Typhoon Agnes (No. 8114) and simulated typhoon induced-wind field and water elevations of Yangtze Estuary and Hangzhou Bay. The simulated results show good correlation with actual surveyed data. The simple operating interface of the coupled system is very convenient for users, who want to learn the usage of the storm surge model, especially for first-time users, which can save their modeling time greatly.
机译:风暴潮是最严重的海洋灾害之一。准确及时的数值预测是防灾的主要手段之一。传统的风暴潮模型缺乏准确性和时间效应。为了克服这些缺点,本文首先在有限体积沿海海洋模型(FVCOM)中添加了一个分析旋风模型,该模型由高分辨率,淹没和干燥能力组成,可用于3D风暴潮建模。然后,我们将MarineTools Pro集成到地理信息系统(GIS)中,以补充风暴潮模型。这为最终用户提供了一个友好的建模平台,并且可以轻松访问模型输入和输出所需的地理参考数据。开发了时间GIS跟踪分析模块,以根据风暴潮的数值结果创建可视路径。它能够追踪风暴在时空上的运动。 MarineTools Pro的功能可以帮助客观,准确地全面理解数据可视化,空间查询和模拟结果分析中的复杂风暴事件。这项研究中开发的工具进一步支持了这样的想法,即耦合系统可以通过为准确的反演或风暴潮预测提供有效的运行环境来提高生产率。最后,该耦合系统用于重建由台风艾格尼丝(No.8114)产生的风暴潮,并模拟长江口和杭州湾的台风诱发风场和水位升高。模拟结果表明与实际调查数据具有良好的相关性。耦合系统的简单操作界面对于想要学习风暴潮模型使用的用户非常方便,特别是对于初次使用的用户,可以大大节省建模时间。

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