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Impact of Rain Gauge Quality Control and Interpolation on Streamflow Simulation: An Application to the Warwick Catchment, Australia

机译:雨量计质量控制和插值法对水流模拟的影响:在澳大利亚沃里克集水区的应用

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Rain gauges are widely used to obtain temporally continuous point rainfall records, which are then interpolated into spatially continuous data to force hydrological models. However, rainfall measurements and interpolation procedure are subject to various uncertainties, which can be reduced by applying quality control and selecting appropriate spatial interpolation approaches. Consequently, the integrated impact of rainfall quality control and interpolation on streamflow simulation has attracted increased attention but not been fully addressed. This study applies a quality control procedure to the hourly rainfall measurements obtained in the Warwick catchment in eastern Australia. The grid-based daily precipitation from the Australian Water Availability Project was used as a reference. The Pearson correlation coefficient between the daily accumulation of gauged rainfall and the reference data was used to eliminate gauges with significant quality issues. The unrealistic outliers were censored based on a comparison between gauged rainfall and the reference. Four interpolation methods, including the inverse distance weighting (IDW), nearest neighbors (NN), linear spline (LN), and ordinary Kriging (OK), were implemented. The four methods were firstly assessed through a cross-validation using the quality-controlled rainfall data. The impacts of the quality control and interpolation on streamflow simulation were then evaluated through a semi-distributed hydrological model. The results showed that the Nasha??Sutcliffe model efficiency coefficient (NSE) and Bias of the streamflow simulations were significantly improved after quality control. In the cross-validation, the IDW and OK methods resulted in good interpolation rainfall, while the NN led to the worst result. In term of the impact on hydrological prediction, the IDW led to the most consistent streamflow predictions with the observations, according to the validation at five streamflow-gauged locations. The OK method performed second best according to streamflow predictions at the five gauges in the calibration period (01/01/2007a??31/12/2011) and four gauges during the validation period (01/01/2012a??30/06/2014). However, NN produced the worst prediction at the outlet of the catchment in the validation period, indicating a low robustness. While the IDW exhibited the best performance in the study catchment in terms of accuracy, robustness and efficiency, more general recommendations on the selection of rainfall interpolation methods need to be further explored.
机译:雨量计被广泛用于获取时间连续点降雨记录,然后将其内插到空间连续数据中以强制进行水文模型。但是,降雨测量和插值过程会受到各种不确定性的影响,可以通过应用质量控制和选择适当的空间插值方法来减少不确定性。因此,降雨质量控制和插值对水流模拟的综合影响引起了越来越多的关注,但尚未得到充分解决。这项研究将质量控制程序应用于澳大利亚东部沃里克流域每小时的降雨量测量。来自澳大利亚水资源利用项目的网格日降水量被用作参考。每日标准雨量积累与参考数据之间的皮尔逊相关系数用于消除质量有重大问题的标准。基于实测降雨与参考之间的比较,对不切实际的异常值进行了检查。实现了四种插值方法,包括反距离权重(IDW),最近邻(NN),线性样条(LN)和普通Kriging(OK)。首先使用质量控制的降雨数据通过交叉验证来评估这四种方法。然后通过半分布式水文模型评估了质量控制和插值对流量模拟的影响。结果表明,质量控制后,Nasha ?? Sutcliffe模型效率系数(NSE)和流模拟的偏差明显提高。在交叉验证中,IDW和OK方法导致良好的插值降雨,而NN导致最差的结果。就对水文预报的影响而言,根据在五个水流测量位置的验证,IDW导致与观测值最一致的水流预测。 OK方法根据在校准期间(01/01 / 2007a ?? 2011年12月31日)的五个仪表和在验证期间(01/01 / 2012a ?? 30/06)的四个仪表的流量预测获得次优/ 2014)。但是,在验证期内,NN在集水区的出口产生了最差的预测,表明鲁棒性很低。虽然IDW在准确性,鲁棒性和效率方面在研究流域中表现出最好的性能,但仍需要进一步探索有关降雨插值方法选择的更一般性建议。

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