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Measurement properties of tipping bucket rain gauges and their influence on urban runoff simulation

机译:翻斗式雨量计的测量特性及其对城市径流模拟的影响

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Tipping bucket rain gauges (TBR) have become the most common device for measuring rainfall intensity in urban hydrology. Due to the measurement principle, the time resolution depends on rainfall intensity and bucket size. The present study investigated the influence of calibration uncertainties and bucket size on the accuracy of rainfall measurement and runoff simulation. Synthetic rainfall events with a time resolution of 6 seconds were generated from measured data. These rainfall series were taken as input to a model that simulated a TBR. Different TBR data series were produced by changing calibration parameters and bucket size of the simulated rain gauge. These data series together with the original rainfall events were used as input to a rainfall-runoff model. Computed runoff and overflow volume from a CSO weir were compared. The differences in rainfall depth, intensity peak and computed runoff due to the depth resolution of the TBR were smaller than expected. A depth resolution of the TBR of 0.2 - 0.3 mm per tip seems to fulfil the requirements in urban hydrology. Errors resulting from depth resolution are small compared to those of calibration (especially false rainfall depth per tip), site exposure, the influence of wind or disregarded areal rainfall distribution.
机译:翻斗式雨量计(TBR)已成为测量城市水文学中降雨强度的最常用设备。根据测量原理,时间分辨率取决于降雨强度和铲斗尺寸。本研究调查了校准不确定性和铲斗尺寸对降雨测量和径流模拟精度的影响。根据测量数据生成了具有6秒时间分辨率的合成降雨事件。这些降雨序列被用作模拟TBR的模型的输入。通过更改校准参数和模拟雨量计的铲斗尺寸,可以产生不同的TBR数据系列。这些数据系列与原始降雨事件一起被用作降雨径流模型的输入。比较了来自CSO堰的计算径流和溢流量。由于TBR的深度分辨率,降雨深度,强度峰值和计算径流量的差异小于预期。每个尖端的TBR的深度分辨率为0.2-0.3 mm,似乎可以满足城市水文学的要求。与校准(尤其是每个尖端的虚假降雨深度),现场暴露,风的影响或无视区域降雨分布的校准相比,深度分辨率引起的误差很小。

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