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Hydroclimatology of the Nile: results from a regional climate model

机译:尼罗河的水文气候学:来自区域气候模型的结果

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This paper presents the result of the regional coupled climatic and hydrologic model of the Nile Basin. For the first time the interaction between the climatic processes and the hydrological processes on the land surface have been fully coupled. The hydrological model is driven by the rainfall and the energy available for evaporation generated in the climate model, and the runoff generated in the catchment is again routed over the wetlands of the Nile to supply moisture for atmospheric feedback. The results obtained are quite satisfactory given the extremely low runoff coefficients in the catchment. The paper presents the validation results over the subbasins: Blue Nile, White Nile, Atbara river, the Sudd swamps, and the Main Nile for the period 1995 to 2000. Observational datasets were used to evaluate the model results including radiation, precipitation, runoff and evaporation data. The evaporation data were derived from satellite images over a major part of the Upper Nile. Limitations in both the observational data and the model are discussed. It is concluded that the model provides a sound representation of the regional water cycle over the Nile. The sources of atmospheric moisture to the basin, and location of convergence/divergence fields could be accurately illustrated. The model is used to describe the regional water cycle in the Nile basin in terms of atmospheric fluxes, land surface fluxes and land surface-climate feedbacks. The monthly moisture recycling ratio (i.e. locally generated/total precipitation) over the Nile varies between 8 and 14%, with an annual mean of 11%, which implies that 89% of the Nile water resources originates from outside the basin physical boundaries. The monthly precipitation efficiency varies between 12 and 53%, and the annual mean is 28%. The mean annual result of the Nile regional water cycle is compared to that of the Amazon and the Mississippi basins.
机译:本文介绍了尼罗河流域区域气候与水文耦合模型的结果。陆地表面上的气候过程和水文过程之间的相互作用第一次是完全耦合的。水文模型由降雨和气候模型中可用于蒸发的能量驱动,流域中产生的径流再次流经尼罗河的湿地,为大气反馈提供水分。鉴于流域的径流系数极低,获得的结果非常令人满意。本文介绍了1995年至2000年期间在以下各个子盆地上的验证结果:青尼罗河,白尼罗河,阿特巴拉河,苏德沼泽和主尼罗河。使用观测数据集评估模型结果,包括辐射,降水,径流和蒸发数据。蒸发数据来自上尼罗河大部分地区的卫星图像。讨论了观测数据和模型的局限性。结论是该模型很好地表示了尼罗河上的区域水循环。流域的大气水分来源以及汇聚/散布场的位置都可以准确地说明。该模型根据大气通量,地表通量和地表气候反馈来描述尼罗河流域的区域水循环。尼罗河的月度水分再循环率(即当地产生的/总降水量)在8%至14%之间变化,年平均为11%,这意味着尼罗河89%的水资源来自流域的物理边界之外。月降水效率在12%至53%之间变化,年平均为28%。将尼罗河区域水循环的年平均结果与亚马逊河和密西西比河流域的年平均结果进行了比较。

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