首页> 外文期刊>Journal of Hydrology >Dynamic gauge adjustment of high-resolution X-band radar data for convective rain storms: Model-based evaluation against measured combined sewer overflow
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Dynamic gauge adjustment of high-resolution X-band radar data for convective rain storms: Model-based evaluation against measured combined sewer overflow

机译:对流暴雨的高分辨率X波段雷达数据的动态量规调整:针对测得的联合下水道溢流的基于模型的评估

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Numerous studies have shown that radar rainfall estimates need to be adjusted against rain gauge measurements in order to be useful for hydrological modelling. In the current study we investigate if adjustment can improve radar rainfall estimates to the point where they can be used for modelling overflows from urban drainage systems, and we furthermore investigate the importance of the aggregation period of the adjustment scheme. This is done by continuously adjusting X-band radar data based on the previous 5-30 min of rain data recorded by multiple rain gauges and propagating the rainfall estimates through a hydraulic urban drainage model. The model is built entirely from physical data, without any calibration, to avoid bias towards any specific type of rainfall estimate. The performance is assessed by comparing measured and modelled water levels at a weir downstream of a highly impermeable, well defined, 64 ha urban catchment, for nine overflow generating rain events. The dynamically adjusted radar data perform best when the aggregation period is as small as 10-20 min, in which case it performs much better than static adjusted radar data and data from rain gauges situated 2-3 km away. (C) 2016 Elsevier B.V. All rights reserved.
机译:许多研究表明,雷达降雨量估计需要针对雨量计测量值进行调整,以便对水文建模有用。在当前的研究中,我们调查了调整是否可以将雷达降雨估计值提高到可以用于模拟城市排水系统溢流的程度,并且我们还研究了调整方案汇总期的重要性。这是通过根据多个雨量计记录的先前5-30分钟的降雨数据连续调整X波段雷达数据并通过城市水力排水模型传播降雨估算来完成的。该模型完全由物理数据构建,无需任何校准,以避免偏向任何特定类型的降雨估计。通过比较高渗透性,定义明确的64公顷城市集水区下游堰的测得的水位和模型水位,评估了九处产生降雨的降雨情况,从而对性能进行了评估。当聚合周期短至10-20分钟时,动态调整的雷达数据的性能最佳,在这种情况下,其性能要比静态调整的雷达数据和2-3公里外的雨量计的数据好得多。 (C)2016 Elsevier B.V.保留所有权利。

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