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首页> 外文期刊>Journal of hydrometeorology >Investigating the Ability of a Land Surface Model to Simulate Streamflow with the Accuracy of Hydrological Models: A Case Study Using MOPEX Materials
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Investigating the Ability of a Land Surface Model to Simulate Streamflow with the Accuracy of Hydrological Models: A Case Study Using MOPEX Materials

机译:研究具有水文模型精度的地表模型模拟水流的能力:使用MOPEX材料的案例研究

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In the Model Parameter Estimation Experiment (MOPEX) project, after calibration of model parameters, complex rainfall-runoff hydrological models (HMs) simulated streamflow better than land surface models (LSMs), including the Soil-Water-Atmosphere-Plant (SWAP) model. A possible explanation for this is that the LSMs may not have been well calibrated. To test this statement, different strategies to calibrate SWAP using daily streamflow from 12 MOPEX basins were investigated. Optimization of parameter values was performed using a combination of an automated optimization algorithm and manual efforts. For automated optimization, two different global optimization algorithms were used: 1) a random search technique and 2) a shuffled complex evolution method developed by the University of Arizona (SCE-UA). Two objective functions, based on the Nash-Sutcliffe coefficient of efficiency and the mean systematic error, were applied. The number of calibrated parameters ranged from 10 to 15. All adjusted parameters were kept within a reasonable range so as not to violate physical constraints while providing a close match between simulated and measured daily streamflow. The results of streamflow simulations with different sets of optimal parameters were compared with each other, with observations, and with simulation results obtained by the HMs that participated in the MOPEX project. The new SWAP calibration strategies resulted in significant improvement of SWAP streamflow simulations, which came close to the best HM results. It was confirmed that model performance depends greatly on the calibration strategy and that the land surface model SWAP, with appropriate calibration, can simulate runoff with the accuracy that is comparable to the accuracy of hydrological models.
机译:在模型参数估计实验(MOPEX)项目中,在对模型参数进行校准之后,复杂的降雨径流水文模型(HMs)对水流的模拟要好于包括土壤-水-大气-植物(SWAP)模型的地表模型(LSM)。 。对此的可能解释是LSM可能未正确校准。为了验证这一说法,研究了使用来自12个MOPEX盆地的日流量校准SWAP的不同策略。参数值的优化是结合使用自动优化算法和手动操作进行的。对于自动优化,使用了两种不同的全局优化算法:1)随机搜索技术和2)亚利桑那大学(SCE-UA)开发的改组复杂进化方法。基于效率的纳什-萨特克利夫系数和平均系统误差,应用了两个目标函数。校准参数的数量范围为10到15。所有调整后的参数均保持在合理范围内,以免违反物理约束,同时提供模拟流量和测量流量之间的紧密匹配。将具有不同最佳参数集的流模拟结果相互比较,进行观察,并与参与MOPEX项目的HM获得的模拟结果进行比较。新的SWAP校准策略大大改善了SWAP流仿真,接近最佳HM结果。可以确定的是,模型的性能很大程度上取决于校准策略,并且通过适当的校准,地表模型SWAP可以模拟径流,其精度与水文模型的精度相当。

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