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首页> 外文期刊>Hydrological sciences journal >High-resolution flood hazard mapping based on nonstationary frequency analysis: case study of Ho Chi Minn City, Vietnam
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High-resolution flood hazard mapping based on nonstationary frequency analysis: case study of Ho Chi Minn City, Vietnam

机译:基于非间断频率分析的高分辨率洪水危害 - 越南胡志明市案例研究

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摘要

Flood modelling inputs used to create flood hazard maps are normally based on the assumption of data stationarity for flood frequency analysis. However, changes in the behaviour of climate systems can lead to nonstationarity in flood series. Here, we develop flood hazard maps for Ho Chi Minh City, Vietnam, under nonstationary conditions using extreme value analysis, a coupled 1D-2D model and high-resolution topographical data derived from LiDAR (Light Detection and Ranging) data. Our findings indicate that ENSO (El Nino Southern Oscillation) and PDO (Pacific Decadal Oscillation) influence the magnitude and frequency of extreme rainfall, while global sea-level rise causes nonstationarity in local sea levels, having an impact on flood risk. The detailed flood hazard maps show that areas of high flood potential are located along river banks, with 0.60 km(2) of the study area being unsafe for people, vehicles and buildings (H5 zone) under a 100-year return period scenario.
机译:用于创建洪水危险地图的洪水建模输入通常基于对洪水频率分析的数据定性的假设。然而,气候系统行为的变化可能导致洪水系列中的非间抗性。在这里,我们在使用极值分析的非视野条件下,越南的胡志明市开发洪水危险地图,耦合的1D-2D模型和来自LIDAR(光检测和测距)数据的高分辨率地形数据。我们的研究结果表明,ENSO(EL Nino Southern振荡)和PDO(太平洋Decadal振荡)影响了极端降雨的幅度和频率,而全球海平面上升导致当地海平面的非间平性,对洪水风险产生影响。详细的洪水危险地图表明,高洪水潜力领域位于河岸沿岸,其中0.60公里(2)km(2)个研究区域,在100年回报期情景下,人们,车辆和建筑物(H5区)不安全。

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