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Predicting streamflow for land cover changes in the Upper Gilgel Abay River Basin, Ethiopia: A TOPMODEL based approach

机译:预测埃塞俄比亚吉尔吉尔州上阿吉河上游流域土地覆被变化的流量:基于TOPMODEL的方法

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摘要

Hydrological effects of land cover changes and runoff contributions from respective land cover types are analysed for the Upper Gilgel Abay basin in Ethiopia. Runoff production and streamflow are simulated by the TOPMODEL approach. For impact assessment of land cover changes, satellite based land covers for the years 1973, 1986 and 2001 are considered. Catchment topography as well as land cover and vegetation characteristics are derived from satellite images and serve to estimate model parameters. Land cover in TOPMODEL has been implemented by spatial units based on the actual size of each land cover type. The topographic index distribution function, which is an important input to the TOPMODEL, is prepared for each land cover type. Simulations are also performed for specific land cover types to allow inter comparison of hydrological responses. Results showed that the highest peak flow as well as the annual streamflow volume varied among the land cover types agriculture, forest and grassland which dominate land cover in the catchment. Results of this study show that in data poor basins, satellite images provide suitable land surface data for rainfall-runoff modelling and land surface parameterization. Findings are of relevance for many African rural catchments which experience rapid population increases and resource scarcity. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对埃塞俄比亚的上吉尔吉·阿拜盆地的土地覆盖变化和径流贡献的水文影响进行了分析。通过TOPMODEL方法模拟径流产生和径流。为了评估土地覆被变化的影响,考虑了1973、1986和2001年的卫星土地覆被。集水区地形以及土地覆盖和植被特征均来自卫星图像,可用于估算模型参数。 TOPMODEL中的土地覆盖已根据每种土地覆盖类型的实际大小通过空间单位实现。为每种土地覆被类型准备了地形指数分布函数,这是TOPMODEL的重要输入。还对特定的土地覆盖类型进行了模拟,以允许相互比较水文响应。结果表明,在农业,森林和草地等土地覆盖类型中,最高流量和年流量最大,而流域占主导地位。这项研究的结果表明,在数据贫乏的盆地中,卫星图像为降雨径流模拟和地表参数化提供了合适的地表数据。调查结果与许多非洲人口迅速增加和资源匮乏的农村流域有关。 (C)2015 Elsevier Ltd.保留所有权利。

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