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Using evapotranspiration estimates from Landsat TM data to analyse uncertainties of a spatially distributed hydrological model (PRMS)

机译:利用LANDAT TM数据的蒸发估计分析空间分布水文模型(PRMS)的不确定性

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In the field of hydrological modelling, there is mostly a lack of spatially distributed data that may allow a detailed analysis of simulation results. This study was to demonstrate that remote sensing can partly fill this gap, as combining reflective and thermal data allows the retrieval of estimates for evapotranspiration (ET). Two Landsat-5 TM scenes were analysed, and the results were afterwards compared to the daily output of the Precipitation Runoff Modeling System, a conceptual model based on Hydrologic Response Units and designed for meso- to macroscale applications. For the study site, the mesoscale Ruwer basin located in the low mountain range of Rhineland-Palatinate (Germany), an overall good agreement of ET estimates retrieved by both approaches was found. At one date, some mismatches indicated clear inconsistencies in the model structure and parameterisation scheme. Based on these findings, a modified soil module was implemented to allow for a more realistic specification of land use dependant parameters. After this, PRMS provided ET estimates now very similar to those from Landsat TM, and the RMSE was reduced from 1.30 to 0.86 mm. These results indicate, that the representation of the hydrological cycle by hydrological modelling may be improved by the integration of appropriate remote sensing data.
机译:在水文建模领域中,大多数可能缺乏可允许详细分析模拟结果的空间分布数据。本研究表明,遥感可以部分地填充这种间隙,因为结合反射和热数据允许检索蒸散蒸腾(ET)的估计。分析了两个Landsat-5 TM场景,然后与降水径流建模系统的日输出相比,结果是基于水文响应单元的概念模型,并为Meso-to Macroscale应用程序进行了比较。对于研究网站,位于莱茵兰 - 普法尔茨(德国)的低山范围内的Mesoscale Ruwer盆地,发现两种方法检索的ET估算的整体吻合一致。在一次之下,一些不匹配在模型结构和参数化方案中明确不一致。基于这些调查结果,实施了一种改进的土壤模块,以允许更现实的土地利用依赖性参数规范。在此之后,PRMS提供的ET估计现在与Landsat TM非常相似,并且RMSE从1.30减少到0.86毫米。这些结果表明,通过集成适当的遥感数据,可以通过流水文建模来提高水文循环的表示。

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