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1D/2D porosity model for urban flood modeling: case of a dense street networks

机译:用于城市洪水建模的1D / 2D孔隙度模型:密集街道网络的案例

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An increasing urbanization of floodplains has led to higher vul- nerability of urban areas and building a new generation of robust, accurate and computationally affordable models dedicated to urban floods is highly re- quired for improving prediction systems and mitigation measures. A better understanding of urban floods hydrodynamics may also be required. In view to achieve computationally affordable and reliable simulations a new 1D/2D parsimonious hydraulic model Flood1D2D is introduced for flood modeling in complex branched urban networks. It takes advantage of a cut-cell technique and a new effective model able to take into account some essential sub-grid flow features such as flow vein contractions due to recirculations downstream of a crossroad. It is shown that this local phenomenon can be correctly repro- duced thanks to this 1D/2D coupled SW model parameterized with roughness and porosity. The ability of the model to reproduce realistic flood discharge distributions at the subdistrict scale is also tested on a part of the branched net- work of ICUBE experimental rig. Further studies should tackle the issues of calibration and unsteady modeling.
机译:漫滩的日益城市化导致城市地区的脆弱性越来越高,为改善预测系统和缓解措施,迫切需要建立新一代的可靠,精确且计算可承受的模型来应对城市洪水。还可能需要更好地了解城市洪水的水动力。为了实现计算上可承受且可靠的仿真,引入了新的1D / 2D简约水力模型Flood1D2D,用于复杂分支城市网络中的洪水建模。它利用了切割单元技术和新的有效模型,该模型能够考虑一些基本的子网格流动特征,例如由于十字路口下游的再循环而导致的流动静脉收缩。结果表明,由于使用了粗糙度和孔隙率参数化的1D / 2D耦合SW模型,可以正确地再现这种局部现象。在ICUBE实验装置的分支网络的一部分上,也测试了该模型在分区规模上再现实际洪水流量分布的能力。进一步的研究应解决校准和不稳定模型的问题。

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