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Hydrological daily rainfall-runoff simulation with BTOPMC model and comparison with Xin'anjiang model 被引量:12

Hydrological daily rainfall-runoff simulation with BTOPMC model and comparison with Xin’anjiang model
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摘要 A grid-based distributed hydrological model, the Block-wise use of TOPMODEL (BTOPMC), which was developed from the original TOPMODEL, was used for hydrological daily rainfall-runoff simulation. In the BTOPMC model, the runoff is explicitly calculated on a cell-by-cell basis, and the Muskingum-Cunge flow concentration method is used. In order to test the model's applicability, the BTOPMC model and the Xin'anjiang model were applied to the simulation of a humid watershed and a semi-humid to semi-arid watershed in China. The model parameters were optimized with the Shuffle Complex Evolution (SCE-UA) method. Results show that both models can effectively simulate the daily hydrograph in humid watersheds, but that the BTOPMC model performs poorly in semi-humid to semi-arid watersheds. The excess-infiltration mechanism should be incorporated into the BTOPMC model to broaden the model's applicability. A grid-based distributed hydrological model, the Block-wise use of TOPMODEL (BTOPMC), which was developed from the original TOPMODEL, was used for hydrological daily rainfall-runoff simulation. In the BTOPMC model, the runoff is explicitly calculated on a cell-by-cell basis, and the Muskingum-Cunge flow concentration method is used. In order to test the model's applicability, the BTOPMC model and the Xin'anjiang model were applied to the simulation of a humid watershed and a semi-humid to semi-arid watershed in China. The model parameters were optimized with the Shuffle Complex Evolution (SCE-UA) method. Results show that both models can effectively simulate the daily hydrograph in humid watersheds, but that the BTOPMC model performs poorly in semi-humid to semi-arid watersheds. The excess-infiltration mechanism should be incorporated into the BTOPMC model to broaden the model's applicability.
出处 《Water Science and Engineering》 EI CAS 2010年第2期121-131,共11页 水科学与水工程(英文版)
基金 supported by the Research Fund for Commonweal Trades (Meteorology) (Grants No.GYHY200706037, GYHY (QX) 2007-6-1,GYHY200906007,and GYHY201006038) the National Natural Science Foundation of China (Grants No.50479017 and 40971016) Program for Changjiang Scholars and Innovative Research Team in University (Grant No.IRT0717)
关键词 digital elevation model BTOPMC model Xin' anjiang model daily rainfall-runoff simulation SCE-UA method humid watershed semi-humid to semi-arid watershed digital elevation model BTOPMC model Xin' anjiang model daily rainfall-runoff simulation SCE-UA method humid watershed semi-humid to semi-arid watershed
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