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Assessing the Impacts of Land Use, Land Cover, and Climate Change on the Hydrological Regime of a Humid Tropical Basin

Bibliographic Data

ID21738427
AuthorsAlka Abraham (0000-0003-1577-5792, National Institute of Technology Karnataka), Subrahmanya Kundapura (0000-0002-7037-6439, National Institute of Technology Karnataka)
Year2023
Volume24
Issue4
Publication date2023-11-01
Peer ReviewedYes
Open AccessNo
TypeARTICLE
VenueNatural Hazards Review (JOURNAL)
Journal identifiersISSN: 1527-6988 • E-ISSN: 1527-6996
PublisherAmerican Society of Civil Engineers (ASCE) (PUBLISHER • US)
DOI10.1061/nhrefo.nheng-1801
OpenAlexW4385562356
LanguageEN
References cited59

Climate change and land use land cover (LULC) change are two major factors influencing river basin hydrology. This study explored these drivers’ isolated and combined impacts on the ecologically relevant flow in the Achencoil basin, Kerala, India. The LULC classification in the study is carried out with the Random Forest (RF) algorithm in the Google Earth Engine (GEE) platform, and Land Change Modeler (LCM) is incorporated for change detection and projection. The future climate data from the National Aeronautics and Space Administration Earth Exchange Global Daily Downscaled Projections (NEX-GDDP) is used for climate change impact assessment. The Soil and Water Assessment Tool (SWAT) is employed to simulate streamflow under LULC and climate change scenarios. The historical and projected future LULC change in the basin revealed an increase in the built-up and barren land, with a significant decrease in agricultural and forest areas. The results show that the projected future precipitation will decrease under the RCP 4.5 and increase under the RCP 8.5 scenario. The projected average maximum and minimum temperature are expected to increase under both scenarios in the basin. The LULC 2050 scenario shows the most significant rise in average annual streamflow, at 7.5%. Whereas in the climate change scenarios, the average annual flow decreases under RCP 4.5 and increases under RCP 8.5. The combined impacts of climate change and LULC change are relatively higher than the isolated effects of these drivers in the basin. The study outcomes are expected to help policymakers consider the effect of climate change and LULC change on the river’s hydrology so as to implement the management activities that account for the riverine ecosystem

Agriculture · Climate change · Climate change scenario · Climate model · Climatology · Drainage basin · Geography · Land cover · Land use · Land use, land-use change and forestry · Meteorology · Precipitation · Representative Concentration Pathways · Soil and Water Assessment Tool · Streamflow · Structural basin · Environmental Science · Flood Risk Assessment and Management · Hydrological Forecasting Using AI · Hydrology and Watershed Management Studies · Geology

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