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Simultaneous calibration of hydrological models in geographical space

机译:地理空间水文模型的同时标定

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Hydrological models are usually calibrated for selected catchments individually using specific performance criteria. This procedure assumes that the catchments show individual behavior. As a consequence, the transfer of model parameters to other ungauged catchments is problematic. In this paper, the possibility of transferring part of the model parameters was investigated. Three different conceptual hydrological models were considered. The models were restructured by introducing a new parameter?iη/i which exclusively controls water balances. This parameter was considered as individual to each catchment. All other parameters, which mainly control the dynamics of the discharge (dynamical parameters), were considered for spatial transfer. Three hydrological models combined with three different performance measures were used in three different numerical experiments to investigate this transferability. The first numerical experiment, involving individual calibration of the models for 15?selected MOPEX catchments, showed that it is difficult to identify which catchments share common dynamical parameters. Parameters of one catchment might be good for another catchment but not the opposite. In the second numerical experiment, a common spatial calibration strategy was used. It was explicitly assumed that the catchments share common dynamical parameters. This strategy leads to parameters which perform well on all catchments. A leave-one-out common calibration showed that in this case a good parameter transfer to ungauged catchments can be achieved. In the third numerical experiment, the common calibration methodology was applied for 96?catchments. Another set of 96?catchments was used to test the transfer of common dynamical parameters. The results show that even a large number of catchments share similar dynamical parameters. The performance is worse than those obtained by individual calibration, but the transfer to ungauged catchments remains possible. The performance of the common parameters in the second experiment was better than in the third, indicating that the selection of the catchments for common calibration is important.
机译:通常使用特定的性能标准针对选定的流域单独校准水文模型。该程序假定流域显示出个别行为。结果,将模型参数转移到其他未排水的集水区是有问题的。本文研究了转移部分模型参数的可能性。考虑了三种不同的概念水文模型。通过引入专门控制水平衡的新参数?η重构了模型。该参数被认为是每个流域的单独参数。所有其他主要控制放电动力学的参数(动力学参数)均已考虑用于空间传递。在三个不同的数值实验中,将三个水文模型与三个不同的性能指标相结合,以研究这种可迁移性。第一个数值实验涉及对15个选定的MOPEX集水区的模型进行单独校准,结果表明,很难确定哪些集水区具有共同的动力学参数。一个流域的参数可能对另一个流域有利,但反之则不然。在第二个数值实验中,使用了常见的空间校准策略。明确假设流域共享共同的动力学参数。这种策略导致参数在所有流域都表现良好。一劳永逸的通用校准表明,在这种情况下,可以很好地将参数传递给未集水的集水区。在第三个数值实验中,通用校准方法应用于96个集水区。另一组96个集水区用于测试常见动力学参数的传递。结果表明,即使大量流域也具有相似的动力学参数。该性能比通过单独校准获得的性能更差,但仍可以转移到未污染的集水区。第二个实验中常用参数的性能要优于第三个实验,这表明集水区的选择对于常规校准很重要。

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