Please use this identifier to cite or link to this item: http://197.159.135.214/jspui/handle/123456789/447
Title: Impacts of Rainfall Variability, Land Use and Land Cover Change on Stream Flow of the Black Volta Basin, West Africa
Authors: Akpoti, Komlavi
Antwi, Eric Ofosu
Kabo-bah, Amos T.
Keywords: rainfall variability
Mann-Kendall test
Sens’s slope
LULC
SWAT model
Black Volta
stream flow
Issue Date: Jul-2016
Publisher: MDPI
Abstract: Potential implications of rainfall variability along with Land Use and Land Cover Change (LULC) on stream flow have been assessed in the Black Volta basin using the SWAT model. The spatio-temporal variability of rainfall over the Black Volta was assessed using the Mann-Kendall monotonic trend test and the Sen’s slope for the period 1976–2011. The statistics of the trend test showed that 61.4% of the rain gauges presented an increased precipitation trend whereas the rest of the stations showed a decreased trend. However, the test performed at the 95% confidence interval level showed that the detected trends in the rainfall data were not statistically significant. Land use trends between the year 2000 and 2013 show that within thirteen years, land use classes like bare land, urban areas, water bodies, agricultural lands, deciduous forests and evergreen forests have increased respectively by 67.06%, 33.22%, 7.62%, 29.66%, 60.18%, and 38.38%. Only grass land has decreased by 44.54% within this period. Changes in seasonal stream flow due to LULC were assessed by defining dry and wet seasons. The results showed that from year 2000 to year 2013, the dry season discharge has increased by 6% whereas the discharge of wet season has increased by 1%. The changes in stream flows components such us surface run-off (SURF_Q), lateral flow (LAT_Q) and ground water contribution to stream flow (GW_Q) and also on evapotranspiration (ET) changes due to LULC was evaluated. The results showed that between the year 2000 and 2013, SURF_Q and LAT_Q have respectively increased by 27% and 19% while GW_Q has decreased by 6% while ET has increased by 4.59%. The resultant effects are that the water yield to stream flow has increased by 4%.
Description: Research Article
URI: http://197.159.135.214/jspui/handle/123456789/447
Appears in Collections:Climate Change and Energy

Files in This Item:
File Description SizeFormat 
Impacts of Rainfall Variability, Land Use and Land.pdf3.61 MBAdobe PDFView/Open


Items in WASCAL Scholar are protected by copyright, with all rights reserved, unless otherwise indicated.