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On the sensitivity of urban hydrodynamic modelling to rainfall spatial and temporal resolution

机译:城市水动力模型对降雨时空分辨率的敏感性

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摘要

Cities are increasingly vulnerable to floods generated by intense rainfall, because of urbanisation of flood-prone areas and ongoing urban densification. Accurate information of convective storm characteristics at high spatial and temporal resolution is a crucial input for urban hydrological models to be able to simulate fast runoff processes and enhance flood prediction in cities. In this paper, a detailed study of the sensitivity of urban hydrodynamic response to high resolution radar rainfall was conducted. Rainfall rates derived from X-band dual polarimetric weather radar were used as input into a detailed hydrodynamic sewer model for an urban catchment in the city of Rotterdam, the Netherlands. The aim was to characterise how the effect of space and time aggregation on rainfall structure affects hydrodynamic modelling of urban catchments, for resolutions ranging from 100 to 2000m and from 1 to 10 min. Dimensionless parameters were derived to compare results between different storm conditions and to describe the effect of rainfall spatial resolution in relation to storm characteristics and hydrodynamic model properties: rainfall sampling number (rainfall resolution vs. storm size), catchment sampling number (rainfall resolution vs. catchment size), runoff and sewer sampling number (rainfall resolution vs. runoff and sewer model resolution respectively).
机译:由于洪灾多发地区的城市化和城市的持续致密化,城市越来越容易遭受强降雨引发的洪水。高空间和时间分辨率下对流风暴特征的准确信息是城市水文模型能够模拟快速径流过程并增强城市洪水预报的关键输入。本文对城市水动力响应对高分辨率雷达降水的敏感性进行了详细研究。来自X波段双极化天气雷达的降雨率被用作荷兰鹿特丹市一个集水区的详细水动力下水道模型的输入。目的是描述分辨率为100至2000m和1至10 min的时空聚集对降雨结构的影响如何影响城市流域的水动力模型。推导出无量纲参数以比较不同风暴条件之间的结果,并描述降雨空间分辨率与风暴特征和流体动力学模型特性的关系:降雨采样数(降雨分辨率与风暴大小),集水区采样数目(降雨分辨率与风暴大小)。流域规模),径流和下水道采样数(分别为降雨分辨率与径流和下水道模型分辨率)。

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