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A GIS-supported 3D approach for flood risk assessment of the Qu'Appelle River, Southern Saskatchewan

机译:GIS支持的3D方法用于萨斯喀彻温省南部Qu'Appelle河的洪水风险评估

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摘要

This research introduces a hybrid approach for flood risk assessment through GIS. The developed approach is based on the integration of hydraulic simulation and GIS analysis, which allows spatial-based visualisation and prediction of flood disaster. In particular, the Hydraulic Engineering Center River Analysis System (HEC-RAS) model is employed to simulate multi-scenario flood cases within a Canadian context; the dimensional stream channel model is constructed based on geometry obtained from Digital Elevation Model (DEM), and ArcView GIS software is used for producing water surface grids, and Triangular Irregular Network (TIN) model is utilised for the study area based on Digital Terrain Model (DTM). The developed approach is applied to a section of the Qu'Appelle River in southern Saskatchewan. The results indicated that the developed methodology is efficient in modelling and visualising the spatial extent of different flood scenarios and in determining flooded areas at risk. It was found that changes in water elevations of the Qu'Appelle River made the downstream areas more at risk.
机译:这项研究介绍了一种通过GIS进行洪水风险评估的混合方法。所开发的方法基于液压仿真和GIS分析的集成,从而可以基于空间的可视化和洪水灾害的预测。特别是,使用了水力工程中心河流分析系统(HEC-RAS)模型来模拟加拿大范围内的多情景洪水案例;基于从数字高程模型(DEM)获得的几何构造维度流通道模型,并使用ArcView GIS软件生成水面网格,并基于数字地形模型将三角不规则网络(TIN)模型用于研究区域(DTM)。所开发的方法应用于萨斯喀彻温省南部的Qu'Appelle河的一部分。结果表明,所开发的方法可以有效地对不同洪水情景的空间范围进行建模和可视化,以及确定处于危险中的洪水区域。人们发现,奎佩勒河水位的变化使下游地区面临更大的风险。

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