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Effects of Using Different Sources of Remote Sensing and Geographic Information System Data on Urban Stormwater 2D–1D Modeling

机译:使用不同来源的遥感和地理信息系统数据对城市雨水2D–1D建模的影响

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Remote sensing (RS) and geographic information system (GIS) data is increasingly used in urban stormwater modeling. The undirected use of such data may waste economic and human resources. In order to provide guidance for practitioners to efficiently use different data collection resources, as well as give a reference for future works, this paper aims to assess the effects of using free access GIS data and ad hoc RS data on urban 2D–1D stormwater modeling. The 2D-surface Two-dimensional Runoff, Erosion, and Export model (TREX) model was published in Science of the Total Environment in 2008. The 1D-sewer CANOE (Logiciel intégré de conception et de diagnostic des réseaux d’assainissement) model was published in Journal of Hydrology in 2004. The two models are integrated in the TRENOE (TREX-CANOE) platform. The modeling approach is applied to a small urban catchment near Paris (Le Perreux sur Marne, 0.12 km 2 ). Simulation results reveal that the detailed land-use information derived from multiple data sources is a crucial factor for accurate simulations. Nevertheless, using the very high resolution LiDAR (light detection and ranging) data is not equally significant for the water flow simulations at sewage outlets. Finally, we suggest that using the free access GIS data accompanying the urban sewer network design might be an acceptable low-cost solution for accurate urban 2D–1D stormwater modeling during moderate rainfall events. Further studies of urban stormwater modeling could focus on the development of “suitable” models with “enough” input data, depending on the management/research objectives.
机译:遥感(RS)和地理信息系统(GIS)数据越来越多地用于城市雨水建模中。此类数据的无方向使用可能会浪费经济和人力资源。为了为从业人员有效地使用不同的数据收集资源提供指导,并为将来的工作提供参考,本文旨在评估使用免费访问的GIS数据和临时RS数据对城市2D–1D雨水建模的影响。 。二维表面二维径流,侵蚀和出口模型(TREX)模型于2008年在《全面环境科学》中发表。一维污水处理厂CANOE(逻辑分析和诊断模型)模型是2004年发表在《水文学杂志》上。这两个模型已集成到TRENOE(TREX-CANOE)平台中。该建模方法适用于巴黎附近的一个小型城市集水区(Le Perreux sur Marne,0.12 km 2)。仿真结果表明,来自多个数据源的详细土地利用信息是进行精确仿真的关键因素。但是,使用高分辨率的LiDAR(光检测和测距)数据对于污水出口处的水流模拟而言并不重要。最后,我们建议在中度降雨事件期间使用免费的GIS数据以及城市下水道网络设计可能是可接受的低成本解决方案,以进行准确的城市2D-1D雨水建模。根据管理/研究目标,对城市雨水建模的进一步研究可能集中在开发具有“足够”输入数据的“合适”模型。

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