Climate change impact on river flow extremes in the Upper Blue Nile River basin

被引:19
作者
Meresa, Hadush K. [1 ]
Gatachew, Mulusew T. [2 ]
机构
[1] MU, Mekelle, Ethiopia
[2] AAU, Addis Ababa, Ethiopia
关键词
Blue Nile; climate change; hydrological extremes; modeling; HYDROLOGICAL EXTREMES; BIAS CORRECTION; UNCERTAINTY; STREAMFLOW; RAINFALL; MODELS; TRENDS; CMIP5;
D O I
10.2166/wcc.2018.154
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
This paper aims to study climate change impact on the hydrological extremes and projected precipitation extremes in far future (2071-2100) period in the Upper Blue Nile River basin (UBNRB). The changes in precipitation extremes were derived from the most recent AFROCORDEX climate data base projection scenarios compared to the reference period (1971-2000). The climate change impacts on the hydrological extremes were evaluated using three conceptual hydrological models: GR4 J, HBV, and HMETS; and two objective functions: NSE and LogNSE. These hydrological models are calibrated and validated in the periods 1971-2000 and 2001-2010, respectively. The results indicate that the wet/dry spell will significantly decrease/increase due to climate change in some sites of the region, while in others, there is increase/decrease in wet/dry spell but not significantly, respectively. The extreme river flow will be less attenuated and more variable in terms of magnitude, and more irregular in terms of seasonal occurrence than at present. Low flows are projected to increase most prominently for lowland sites, due to the combined effects of projected decreases in Belg and Bega precipitation, and projected increases in evapotranspiration that will reduce residual soil moisture in Bega and Belg seasons.
引用
收藏
页码:759 / 781
页数:23
相关论文
共 56 条
[1]  
Abdellatif M., 2012, OPEN J MOD HYDROL, V2, P49
[2]   Comparing impacts of climate change on streamflow in four large African river basins [J].
Aich, V. ;
Liersch, S. ;
Vetter, T. ;
Huang, S. ;
Tecklenburg, J. ;
Hoffmann, P. ;
Koch, H. ;
Fournet, S. ;
Krysanova, V. ;
Mueller, N. ;
Hattermann, F. F. .
HYDROLOGY AND EARTH SYSTEM SCIENCES, 2014, 18 (04) :1305-1321
[3]  
[Anonymous], 2015, Valuing weather and climate: Economic assessment of meteorological and hydrological services
[4]   A comparative analysis of 9 multi-model averaging approaches in hydrological continuous streamflow simulation [J].
Arsenault, Richard ;
Gatien, Philippe ;
Renaud, Benoit ;
Brissette, Francois ;
Martel, Jean-Luc .
JOURNAL OF HYDROLOGY, 2015, 529 :754-767
[5]  
Bergstrom S, 1976, Development and application of a conceptual runoff model for Scandinavian catchments
[6]  
Beven K.J., 2001, RAINFALL RUNOFF MODE
[7]   At what scales do climate variability and land cover change impact on flooding and low flows? [J].
Bloeschl, Guenter ;
Ardoin-Bardin, Sandra ;
Bonell, Mike ;
Dorninger, Manfred ;
Goodrich, David ;
Gutknecht, Dieter ;
Matamoros, David ;
Merz, Bruno ;
Shand, Paul ;
Szolgay, Jan .
HYDROLOGICAL PROCESSES, 2007, 21 (09) :1241-1247
[8]   Analyzing the effects of different soil databases on modeling of hydrological processes and sediment yield in Benin (West Africa) [J].
Bossa, A. Y. ;
Diekkrueger, B. ;
Igoe, A. M. ;
Gaiser, T. .
GEODERMA, 2012, 173 :61-74
[9]   The Response of Precipitation Minus Evapotranspiration to Climate Warming: Why the "Wet-Get-Wetter, Dry-Get-Drier'' Scaling Does Not Hold over Land [J].
Byrne, Michael P. ;
O'Gorman, Paul A. .
JOURNAL OF CLIMATE, 2015, 28 (20) :8078-8092
[10]   Development of a High-Resolution Gridded Daily Meteorological Dataset over Sub-Saharan Africa: Spatial Analysis of Trends in Climate Extremes [J].
Chaney, Nathaniel W. ;
Sheffield, Justin ;
Villarini, Gabriele ;
Wood, Eric F. .
JOURNAL OF CLIMATE, 2014, 27 (15) :5815-5835