Determining the response of basin water resources to rainfall and temperature fluctuations is a crucial source of information for basins water resources planning and management. The study used a descriptive, Mann-Kendall trend test (M-K) and Multiple Linear Regression (MLR). The mean, standard deviations and variations were spatially interpolated using the geostatistical technique. The trend results showed an increase in both rainfall and temperature series. However, the only statistically significant trends were in June and September for rainfall series and in February, May, and April for the temperature series. Rainfall exhibited high temporal variability whereas temperature showed high spatial variability. The intra-annual variability wa...
Climate change plays a key role in changing vegetation productivity dynamics, which ultimately affec...
Climate change plays a key role in changing vegetation productivity dynamics, which ultimately affec...
It is undeniable that climate and land use changes affect the major components of hydrological cycle...
Determining the response of basin water resources to rainfall and temperature fluctuations is a cruc...
Global warming and climate variability are emerging as the foremost environmental problems in the 21...
Study region: Hadejia River Basin (HRB) in North Eastern Nigeria. Study focus: The hydrological tren...
Identification of the precise nature and attributes of the time series of climatological data is ver...
The pattern of rainfall and temperature behaviour in the Hadejia River Basin (HRB) has been assessed...
Proper understanding of the historical annual runoff characteristics with respect to climate impacts...
Water resources management in a basin needs an intensive analysis of historical data in terms of di...
Changes in runoff trends have caused severe water shortages and ecological problems in agriculture a...
This study examines the impact of climate change on water resources in some parts of the Sudano-Sahe...
The non-parametric Mann-Kendall (MK) trend test, including the Sen's slope test and Pettitt's test, ...
Study region: Hadejia River Basin (HRB) in North Eastern Nigeria. Study focus: The hydrological tren...
Climate change is expected to inflict severe consequences on the hydrological cycle and water resour...
Climate change plays a key role in changing vegetation productivity dynamics, which ultimately affec...
Climate change plays a key role in changing vegetation productivity dynamics, which ultimately affec...
It is undeniable that climate and land use changes affect the major components of hydrological cycle...
Determining the response of basin water resources to rainfall and temperature fluctuations is a cruc...
Global warming and climate variability are emerging as the foremost environmental problems in the 21...
Study region: Hadejia River Basin (HRB) in North Eastern Nigeria. Study focus: The hydrological tren...
Identification of the precise nature and attributes of the time series of climatological data is ver...
The pattern of rainfall and temperature behaviour in the Hadejia River Basin (HRB) has been assessed...
Proper understanding of the historical annual runoff characteristics with respect to climate impacts...
Water resources management in a basin needs an intensive analysis of historical data in terms of di...
Changes in runoff trends have caused severe water shortages and ecological problems in agriculture a...
This study examines the impact of climate change on water resources in some parts of the Sudano-Sahe...
The non-parametric Mann-Kendall (MK) trend test, including the Sen's slope test and Pettitt's test, ...
Study region: Hadejia River Basin (HRB) in North Eastern Nigeria. Study focus: The hydrological tren...
Climate change is expected to inflict severe consequences on the hydrological cycle and water resour...
Climate change plays a key role in changing vegetation productivity dynamics, which ultimately affec...
Climate change plays a key role in changing vegetation productivity dynamics, which ultimately affec...
It is undeniable that climate and land use changes affect the major components of hydrological cycle...