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On the use of semi-distributed and fully-distributed urban stormwater models

机译:关于使用半分布式和全分布式城市雨水模型

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摘要

Urban stormwater models comprise four main components: rainfall, rainfall-runoff, overland flow and sewer flow modules. They can be considered semi-distributed (SD) or fully distributed (FD) according to the rainfall-runoff module definition. SD models are based on sub-catchments units through which rainfall is applied to the model and at which runoff volumes are estimated. In FD models, the runoff volumes are estimated and applied directly on every element of a twodimensional (2D) model of the surface. This poster presents a comparison of SD and FD models based on two case studies: Zona Central catchment at Coimbra, Portugal, and Cranbrook catchment at London, UK. SD and FD modelling results are compared against water depth and flow records in sewers, and photographic records of a flood event. In general, FD models are theoretically more realistic and physically-based, but the results of this study suggest that the implementation of these models requires higher resolution (more detailed) elevation, land use and sewer network data than is normally used in the implementation of SD models. Failing to use higher resolution data for the implementation of FD models could result in poor-performing models. In cases when high resolution data are not available, the use of SD models could be a better choice.
机译:城市雨水模型包括四个主要部分:降雨,降雨径流,陆上流量和下水道流量模块。根据降雨径流模块的定义,可以将它们视为半分布式(SD)或全分布式(FD)。 SD模型基于子汇水单位,通过该子汇水单位将降雨应用于模型并估算径流量。在FD模型中,估算径流量并将其直接应用于曲面的二维(2D)模型的每个元素。此海报根据两个案例研究对SD和FD模型进行了比较:葡萄牙科英布拉的Zona Central集水区和英国伦敦的Cranbrook集水区。将SD和FD建模结果与下水道中的水深和流量记录以及洪水事件的照相记录进行比较。一般而言,FD模型在理论上更实际且更基于物理,但本研究结果表明,与通常在实施FD模型时相比,这些模型的实施需要更高的分辨率(更详细)的海拔,土地使用和下水道网络数据。 SD模型。未能使用更高分辨率的数据来实现FD模型可能会导致性能不佳的模型。如果没有高分辨率数据,则使用SD模型可能是更好的选择。

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