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Drainage system and detailed urban topography: towards operational 1D-2D modelling for stormwater management

机译:排水系统和详细的城市地形:朝风水管理运营1D-2D模型

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Flash floods are increasingly occurring due to climate change and the dramatic increase of population over areas characterized by aging and undersized drainage systems. Many studies are dealing with the topic of urban pluvial flooding, but few of them thoroughly consider interactions between surface runoff and pipe flow. In addition, to get a better knowledge of the processes leading to flash floods in urban areas, the specificities of urban topography features have to be taken into account while modelling dual drainage, such as streets, sidewalks, road curbs, bridges, etc. This paper aims to present a detailed modelling approach at a district scale as a first step, in order to determine impacts of detailed and simplified topography implementation on intense runoff modelling. The second step aims to set up an optimized city scale runoff modelling and management. The coastal Mediterranean city (Nice, France) characterized by steep and low slopes areas suffered from an intense rainfall event in October 2015. This study-case enables to investigate on such problematic as a high-resolution (0.2m) photo-interpreted topographic dataset is available. Investigation based on Geographic Information System (GIS) is followed by 1D and 2D modelling. Results are presented by confronting outcomes given by GIS analysis and hydrodynamic modelling. It is shown that high-resolution data should be used carefully while dealing with urban hydrology and hydraulics. The reflection is driven towards a set of guidelines for modellers interested in helping stormwater operational management.
机译:山洪发生的越来越多,由于气候变化和人口的特点是老化和不足的排水系统领域的急剧增加。许多研究和处理城市多雨洪水的话题,但很少全面考虑地表径流和管流之间的交互。此外,为了获得导致城市地区山洪暴发的过程有更好的认识,城市地形特点的特殊性必须被考虑,而造型的双排水,如街道,人行道,路缘石路,桥梁等,这本文旨在在地区规模作为第一步提出详细建模方法中,为了确定对激烈径流建模详述和简化地形实施的影响。第二步旨在建立一个优化的城市规模径流建模和管理。在2015年10月本研究案例特点是陡峭,从强降雨事件遭受低坡地区的地中海沿岸城市(尼斯,法国),可探讨这样的问题,因为高分辨率(0.2 M)光解释地形数据集可用。基于地理信息系统(GIS)调查之后1D和2D建模。结果是通过对抗的结果通过GIS分析和流体动力模型给出的呈现。结果表明,在处理城市水文和水力学高分辨率数据应谨慎使用。反射朝向了一套兴趣帮助雨水运营管理模型制作指南驱动。

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