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Teleconnect Blue Nile Basin Rainfall and Runoff
Teleconnect Blue Nile Basin Rainfall and Runoff

Teleconnect Blue Nile Basin Rainfall and Runoff

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The Nile River, the primary water resource and the life artery for Egypt and Sudan, exhibits strong seasonal fluctuations. The Upper Blue Nile basin (UBNB), the most significant tributary of the Nile, contributes more than half of the Nile's streamflow. This book employed the nonstationary techniques of Wavelet principal component analysis (WPCA) and coherence analysis to identify the spatio-temporal and frequency variability regimes of these hydro-climatic processes. A fully distributed, a modified version of the Interactions Soil-Biosphere-Atmosphere model of Météo-France , and a lumped, SAC-SMA, was used to study the potential hydrologic effect of climate anomalies on the UBNB were re-sampled and used to drive MISBA and SAC-SMA. An artificial neural network calibrated by a genetic algorithm (ANN-GA) model, was developed to forecast the seasonal rainfall of UBNB through teleconnection with selected oceanic sectors of SST. ANN-GA was also forced with seasonal oceanic SST to directly forecast seasonal streamflow which was then disaggregated to weekly streamflow. Knowledge gained on such teleconnection will be useful for the planning and management of its water resources.
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