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Variable source area modelling in urbanizing watersheds

机译:城市化流域中的可变源区建模

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A variable source area model called TOPMODEL was modified and tested for its applicability on urbanizing watersheds. The model was modified to consider urban land uses by altering the topographic index and the mechanism of surface runoff generation. A Geographic Information System was utilized to delineate the catchment, determine the urban areas and produce Digital Elevation Models. The model was applied to a small catchment of approximately 8 km(2) in southern Ontario that is characterized by mild slopes, well-draining soils and a semi-humid climate. Testing was conducted using a partially revised model with four calibration parameters (TOPURBAN v. 1)applied to three separate time periods; and a fully revised model with five calibration parameters (TOPURBAN v. 2) applied to six time periods. The model performed well with calibrated model efficiencies of greater than 70%. Verification efficiencies ranged from 20 to 70%. TOPURBAN v, 2 increased Nash and Sutcliffe efficiency in comparison to v. 1 by anywhere from 2 to 8% as it accounted for storage in the urban areas. This model is recommended for urbanizing catchments of small to moderate size. Some calibrated parameter interaction was observed between parameters dealing with the urban areas and parameters dealing with the natural areas. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 15]
机译:修改了一个称为TOPMODEL的可变源区域模型,并对其在城市化流域上的适用性进行了测试。通过改变地形指数和地表径流的产生机理,对模型进行了修改以考虑城市土地利用。利用地理信息系统来描述集水区,确定市区并生成数字高程模型。该模型已应用于安大略省南部约8 km(2)的小流域,其特征是坡度平缓,排水良好的土壤和半湿润的气候。使用部分修改的模型进行测试,该模型具有四个校准参数(TOPURBAN v。1),分别应用于三个独立的时间段;以及经过完全修改的模型,并在六个时间段应用了五个校准参数(TOPURBAN v。2)。该模型表现良好,校准后的模型效率大于70%。验证效率为20%到70%。与v。1相比,TOPURBAN v,2提高了Nash和Sutcliffe的效率,从2%到8%有所提高,因为它占了市区的存储量。建议将该模型用于中小规模集水区的城市化。在处理城市区域的参数和处理自然区域的参数之间观察到一些校准的参数交互作用。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:15]

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