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2D numerical modeling of two dam-break flood model studies in an urban locality

机译:2D城市地区两次破坏洪水模型研究的2D数值模型

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摘要

The increasing frequency of urban flooding episodes is a cause for concern for urban management and deciders. In this research, two benchmark urban flood inundation modeling (FIM) studies under the European Union-funded IMPACT Project are modeled with the 2D Sedimentation and River Hydraulics model, SRH2D. The two studies are "the model city flooding experiment" and the "isolated building" test case.The model result comparison with the measured datasets are carried out in terms of time series of flow depths at gauge locations as well as the surface flow velocity maps over the whole domain. The model is also assessed for different building treatments in the computational mesh. The model performed admirably in reproducing the flow depths at the gauge locations with a mean Nash-Sutcliffe efficiency value of 0.89. The model discrepancy is mostly due to 3D effects, which are predominant, right after the dam-break flow release from the reservoir. The second case study investigates dam-break flow around a single building as opposed to the first case study, which is focused on a locality exposed to flood. The study points to the promise held by the 2D shallow water equation-based FIM models in tracking the flood progression and providing a reliable spatiotemporal numerical dataset for the flow depths and discharges, which is a key ingredient that goes into the generation of flood hazard maps.
机译:城市洪水剧集频率的增加是城市管理和解放师关注的原因。在本研究中,欧盟资助影响项目下的两个基准城市洪水淹没建模(FIM)研究采用SRH2D的2D沉降和河流液压模型进行了建模。这两项研究是“模型城市洪水实验”和“隔离建筑”测试案例。与测量数据集的模型结果比较在规格位置的流量深度以及表面流速图方面进行了比较在整个领域。还评估了计算网格中的不同建筑物治疗模型。令人钦佩地表演的模型在仪表位置处再现流动深度,其平均纳什 - Sutcliffe效率值为0.89。模型差异大多是由于3D效果,这是主要的,在储存器中坝断线释放之后。第二种案例研究调查了一个建筑物周围的坝断线,而不是第一种案例研究,该研究集中在暴露于洪水的地方。该研究指出了基于2D浅水方程式的FIM模型持有的承诺,在跟踪洪水进展中,为流动深度和放电提供可靠的时空数值数据集,这是进入洪水危险地图的一代的关键成分。

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