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A Contrastive Study of Simulation Results between GWSC-VMR and Hybrid Runoff Model in Dianzi Basin

机译:滇池盆地GWSC-VMR与混合径流模型的模拟结果对比研究

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For the purpose of hydrological process simulation in cold and arid regions, the authors brought out the Vertically-mixed runoff model with Grid-based Water Storage Capacity(GWSC-VMR) on the base of the spatial distributed model of water storage capacity. In GWSC-VMR, factors such as topography, vegetation, soil and meteorology were taken into account. GWSC-VMR included canopy interception module, snow accumulation and melt module, evapotranspiration module and runoff yield and concentration module. To verify the simulation result of GWSC-VMR, both GWSC-VMR and hybrid runoff model were applied in Dianzi basin to simulate the daily runoff process in the period of 1973 to 1979. After simulations, the authors found that the annual average NASH-Sutcliffe coefficient of GWSC-VMR reached 0.80; as well as the annual average NASH-Sutcliffe coefficient of hybrid runoff model was only 0.67. Simulation results indicated that the annual NASH-Sutcliffe coefficient of GWSC-VMR is high and this hydrological model is adequate for arid and semiarid area daily runoff simulation. Furthermore, as a distributed hydrological model, GWSC-VMR could be applied in regional water resource management.
机译:为了在寒冷和干旱地区进行水文过程仿真的目的,作者用基于网格的蓄水量(GWSC-VMR)的垂直混合径流模型在蓄水能力的空间分布式模型的基础上提出。在GWSC-VMR中,考虑了地形,植被,土壤和气象等因素。 GWSC-VMR包括Canopy拦截模块,积雪和熔体模块,蒸发散模块和径流产量和浓度模块。为了验证GWSC-VMR的仿真结果,在Dianzi盆地应用GWSC-VMR和混合径流模型,以模拟1973年至1979年的日常径流过程。在模拟之后,作者发现年度平均的纳什·萨特克利夫GWSC-VMR系数达到0.80;除了混合径流模型的年平均纳什 - Sutcliffe系数仅为0.67。仿真结果表明,GWSC-VMR的每年纳什 - Sutcliffe系数高,这种水文模型适用于干旱和半干旱地区日常径流模拟。此外,作为分布式水文模型,GWSC-VMR可用于区域水资源管理。

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