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首页> 外文期刊>Geosciences >Validating Rainfall-Runoff Modelling Using Satellite-Based and Reanalysis Precipitation Products in the Sre Pok Catchment, the Mekong River Basin
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Validating Rainfall-Runoff Modelling Using Satellite-Based and Reanalysis Precipitation Products in the Sre Pok Catchment, the Mekong River Basin

机译:使用基于卫星和再分析降水产品的湄公河流域Sre Pok集水区验证降雨径流模型

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摘要

The limitation in quantity and quality of climate data, in particular rainfall measurements, directly affects the reliability of hydrological models, which negatively impacts on the quality of water resources planning and management. This is obviously true in poorly-gauged or in transboundary river catchments with limited practice of data sharing among the riparian states. Satellite-based and reanalysis rainfall products are increasingly recognised as a promising information source to supplement ground observations. This research aims to study the feasibility of using satellite-based and reanalysis rainfall data for rainfall-runoff modelling in the Sre Pok catchment-a poorly gauged catchment located in Vietnam and Cambodia. First, three selected rainfall products (Tropical Rainfall Measuring Mission-TRMM, CPC MORPHing Technique-CMORPH, and European Reanalysis-ERA-Interim) were compared against ground rainfall data of 13 rain-gauges, located inside and in the vicinity of the study catchment. The validation results show that the studied global datasets have a reasonably good correlation with ground observation at monthly time scale (NSE = 0.3 to 0.8, R 2 = 0.4 to 0.8), but relatively poor correlation at daily scale (NSE = ?0.4 to 0.3, R 2 = 0.1 to 0.4). Next, a semi-distributed rainfall-runoff model based on HBV-Light was developed to validate these datasets in the Krong Ana sub-catchment of the Sre Pok. The results illustrate satisfactory to very good model performances at monthly time scale for the satellite-based and reanalysis rainfall inputs (NSE = 0.58 to 0.77, R 2 = 0.59 to 0.78 for the calibration period from 2004 to 2007, while NSE = 0.59 to 0.80, R 2 = 0.64 to 0.84 for the validation period from 2008 to 2010). However, only TRMM and ERA-Interim give acceptable results at daily scale with NSE = 0.52 to 0.67, R 2 = 0.53 to 0.67 for the calibration period, and NSE = 0.41 to 0.61, R 2 = 0.45 to 0.65 for the validation period. The study concludes that the tested satellite-based and reanalysis rainfall products, especially TRMM and ERA-Interim, could mimic reasonably well the monthly rainfall pattern in the study region. It also demonstrates a great opportunity to use satellite-based and reanalysis rainfall for runoff modelling at monthly time scale in the Sre Pok catchment and other poorly-gauged (transboundary) catchments in the region, for example in the Mekong and Red River Basins.
机译:气候数据,特别是降雨测量数据的数量和质量的局限性,直接影响到水文模型的可靠性,对水资源规划和管理的质量产生负面影响。在水土流失较弱或跨河集水区和沿河国家之间共享数据的实践有限的情况下,这显然是正确的。基于卫星和重新分析的降雨产品日益被认为是补充地面观测资料的有前途的信息来源。这项研究的目的是研究使用卫星和重新分析的降雨数据进行Sre Pok流域(位于越南和柬埔寨的水土流失较弱的流域)进行降雨径流建模的可行性。首先,将三个选定的降雨产品(热带降雨测量任务-TRMM,CPC MORPHing技术-CMORPH和欧洲再分析-ERA-临时)与位于研究集水区内部和附近的13个雨量计的地面降雨数据进行了比较。 。验证结果表明,所研究的全球数据集与月度尺度上的地面观测值具有相当好的相关性(NSE = 0.3至0.8,R 2 = 0.4至0.8),但在日尺度上的相关性相对较差(NSE =α0.4至0.3 ,R 2 = 0.1至0.4)。接下来,开发了基于HBV-Light的半分布式降雨-径流模型,以验证Sre Pok的Krong Ana子汇水面积中的这些数据集。结果表明,对于基于卫星和重新分析的降雨输入,每月时间尺度上的模型性能非常令人满意(NSE = 0.58至0.77,R 2 = 0.59至0.78,在2004年至2007年的校准期间,而NSE = 0.59至0.80 ,对于2008年至2010年的有效期,R 2 = 0.64至0.84)。但是,只有TRMM和ERA-Interim在日标范围内给出可接受的结果,在校准期间NSE = 0.52至0.67,R 2 = 0.53至0.67,在验证期间NSE = 0.41至0.61,R 2 = 0.45至0.65。研究得出的结论是,经测试的基于卫星和重新分析的降雨产品,尤其是TRMM和ERA-Interim,可以合理地模拟研究区域的每月降雨模式。它还显示了一个很好的机会,可以在Sre Pok流域和该地区其他贫瘠(跨界)流域(例如,湄公河和红河流域)的月度尺度上,使用基于卫星和重新分析的降雨进行径流模拟。

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