Hydrological variability in river basins is strongly influenced by LULC changes, particularly in tropical regions where rapid forest transformation and agricultural expansion alter rainfall–runoff processes. Understanding how these dynamic land surface changes affect precipitation–discharge relationships is essential f...
D. Pandi, Muthukrishnavellaisamy Kumarasamy· Indonesian Journal of Geogra...· 0 citations
This study investigates the influence of rainfall variability on runoff generation in the Upper Ing River Basin and inflow to the Mae Tum Reservoir in northern Thailand using the physically based Soil and Water Assessment Tool (SWAT) version 2012. In small mountainous watersheds, water supply reliability for irrigation...
Effective water resource management is critical in humid tropical regions like Kerala, India, where intense monsoonal rainfall often leads to high runoff and seasonal water scarcity. This study developed a decision-support framework integrating the Soil and Water Assessment Tool (SWAT) with GIS-based multi-criteria e...
Panchamy Balan, Asha Joseph, Anu Varughese et al.· Water Practice & Technol...· 0 citations
Drought has intensified across the Mekong River Basin (MRB) due to climate variability and increasing human interventions, creating substantial risks for water resources and agriculture. This study applied the SWAT model to simulate hydrological processes and evaluate meteorological, agricultural, and hydrological drou...
Anh Nguyen Quoc, Thi-Thu-Ha Nguyen, Phong Nguyen Thanh et al.· Vietnam Journal of Earth Sci...· 0 citations
This study aimed to assess the hydrological conditions of the Bajing Sub-watershed, Jember, Indonesia, by integrating the Soil and Water Assessment Tool (SWAT) with statistical analysis of streamflow and sediment yield to provide scientific evidence for sustainable watershed management. A quantitative approach combinin...
Mahatir Muhammad Febi Fermansyah, Bambang Hermiyanto, S. Avivi et al.· Journal of global ecology an...· 0 citations
Climate change can significantly alter river basin hydrology, sediment transport, and hydrological extremes, particularly in monsoon-dominated mountainous basins. This study assessed the potential impacts of climate change on streamflow, sediment load, and hydrological extremes in Thailand’s Upper Ping River Basin (UPR...
Liheang Ban· 0 citations
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