Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Are we using the right fuel to drive hydrological models? A climate impact study in the Upper Blue Nile

Domaine:

climateenvironment and energy

Type de record:

paper
Créateur:
LieTecRusDob
Éditeur:
UniUni
Éditeur:
Fre
Hôte:avatar
Climate simulations are the fuel to drive hydrological models that are used to assess the impacts of climate change and variability on hydrological parameters, such as river discharges, soil moisture, and evapotranspiration. Unlike with cars, where we know which fuel the engine requires, we never know in advance what unexpected side effects might be caused by the fuel we feed our models with. Sometimes we increase the fuel's octane number (bias correction) to achieve better performance and find out that the model behaves differently but not always as was expected or desired. This study investigates the impacts of projected climate change on the hydrology of the Upper Blue Nile catchment using two model ensembles consisting of five global CMIP5 Earth system models and 10 regional climate models (CORDEX Africa). WATCH forcing data were used to calibrate an eco-hydrological model and to bias-correct both model ensembles using slightly differing approaches. On the one hand it was found that the bias correction methods considerably improved the performance of average rainfall characteristics in the reference period (1970–1999) in most of the cases. This also holds true for non-extreme discharge conditions between Q20 and Q80. On the other hand, bias-corrected simulations tend to overemphasize magnitudes of projected change signals and extremes. A general weakness of both uncorrected and bias-corrected simulations is the rather poor representation of high and low flows and their extremes, which were often deteriorated by bias correction. This inaccuracy is a crucial deficiency for regional impact studies dealing with water management issues and it is therefore important to analyse model performance and characteristics and the effect of bias correction, and eventually to exclude some climate models from the ensemble. However, the multi-model means of all ensembles project increasing average annual discharges in the Upper Blue Nile catchment and a shift in seasonal patterns, with decreasing discharges in June and July and increasing discharges from August to November.

Visit

doi.orgrefubium.fu-berlin.de

Tags

hydrological models500 Naturwissenschaften und Mathematik::550 Geowissenschaften, Geologie::551 Geologie, Hydrologie, Meteorologie

Licenses

https://creativecommons.org/licenses/by/3.0

Similaires

Impact of Meteorological Drought in Upper Blue Nile Basin on the Hydrological Drought of Nile River in EgyptSpatial and Temporal Variability in Hydrological Responses of the Upper Blue Nile basin, EthiopiaClimate Change Impact On Lake Tana Water Storage, Upper Blue Nile Basin, EthiopiaImpact of Climate Change on Streamflow Hydrology in Headwater Catchments of the Upper Blue Nile Basin, EthiopiaModeling climate change impacts on blue and green water in the Ethiopian upper Blue Nile basinTeleconnection, Modeling, Climate Anomalies Impact and Forecasting of Rainfall and Streamflow of the Upper Blue Nile River Basin TELECONNECT BLUE NILE BASIN RAINFALL & RUNOFF

Impact of Meteorological Drought in Upper Blue Nile Basin on the Hydrological Drought of Nile River in Egypt

Precipitation over the Upper Blue Nile Basin in Ethiopia contributes with 85% of the Nile river whic

Spatial and Temporal Variability in Hydrological Responses of the Upper Blue Nile basin, Ethiopia

To assess the spatial and temporal availability of blue and green water for up- and downstream stake

Climate Change Impact On Lake Tana Water Storage, Upper Blue Nile Basin, Ethiopia

Abstract Temperature and precipitation trend fluctuations influence the components of the

Impact of Climate Change on Streamflow Hydrology in Headwater Catchments of the Upper Blue Nile Basin, Ethiopia

This study assessed the impact of climate change on water availability and variability in two subbas

Modeling climate change impacts on blue and green water in the Ethiopian upper Blue Nile basin

Teleconnection, Modeling, Climate Anomalies Impact and Forecasting of Rainfall and Streamflow of the Upper Blue Nile River Basin TELECONNECT BLUE NILE BASIN RAINFALL & RUNOFF

The Nile River, the primary water resource and the life artery for the downstream countries, Egypt a