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An ET-Based Two-Phase Method for the Calibration and Application of Distributed Hydrological Models

机译:基于ET的分布式水文模型的校准和应用的两相方法

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摘要

Parameter calibration is a core process for the application of distributed hydrological models, which depends strongly on river runoff records. However, the sparse distribution of hydrological gauging stations has largely limited the application of hydrological modeling. Remote sensing evapotranspiration (ET) data open a new avenue for the calibration of hydrological models. In this study, we used MOD16 ET, a data product from the moderate-resolution imaging spectroradiometer (MODIS), to calibrate a hydrological model in a two-phased approach. A simulated runoff time series was created with the Soil and Water Assessment Tool (SWAT) model that was automatically calibrated for ET in the first phase. The simulated runoff time series was then used in the second phase as the "observed" variable for a semiautomatic calibration in which runoff composition was further refined based on a comprehensive understanding of the local hydrological cycle. The results indicate that the output of simulated ET to MOD16 ET was acceptable and produced a reasonable runoff time series compared to the actual observed runoff, yet the composition of runoff was unsatisfactory for the different runoff components (e.g., surface runoff and base flow) after only automatic calibration. The runoff components were improved by semimanual calibration of the runoff sensitive parameters and resulted in a well calibrated distributed hydrological model. The increasing availability and improving quality of global ET datasets provide an alternative way to calibrate hydrological models, especially in ungauged meso- and large-scale basins. Even though the runoff gauging series is not a prerequisite for the method, some in situ observations are still valuable for the optimization of water cycle components.
机译:参数校准是应用分布式水文模型的核心过程,这取决于河流径流记录的强烈。然而,水文测量站的稀疏分布在很大程度上限于水文模拟的应用。遥感evapotranspiration(et)数据打开新的水文模型校准的新途径。在这项研究中,我们使用了Mod16等,从中频分辨率成像光谱仪(MODIS)的数据产品,以双相位校准水文模型。模拟径流时间序列是用土壤和水评估工具(SWAT)模型创建的,该模型在第一阶段自动校准等。然后将模拟的径流时间序列用于第二阶段,因为基于对局部水文循环的综合了解进一步精制径流组合的“观察到”变量。结果表明,与实际观察到的径流相比,模拟ET的输出是可接受的,并产生合理的径流时间序列,但在不同的径流组件(例如,表面径流和碱流)之后,径流的组成是不令人满意的只有自动校准。通过径流敏感参数的半月校准来提高径流组件,并导致校准的分布式水文模型。越来越多的可用性和改善质量的全球ET数据集提供了校准水文模型的替代方法,特别是在未吞噬的中间和大型盆地中。尽管径流测量系列不是该方法的先决条件,但某些原位观察对于优化水循环组件仍然有价值。

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