Area of research
Water Science and Technology · Environmental Chemistry
Research interest
Research interests include Hydrology and Watershed Management Studies, Soil and Water Nutrient Dynamics, Climate variability and models, and Soil erosion and sediment transport.
Investigating the effect of animal manure on colloidal-facilitated phosphorus transport
Management Strategies for Dissolved Organic Carbon Reduction from Forested Watersheds using the SWAT-C model
Nutrient dynamics simulation in wetlands by integrating the soil and water assessment tool (SWAT) with the process-based wetland model: SWAT-WetQual
Preferential flow of phosphorus and nitrogen under steady‐state saturated conditions
Stakeholder-driven assessment of watershed management strategies for agriculture and ecological sustainability: A case study in the lower Apalachicola-Chattahoochee-Flint (ACF) River Basin
Methodologies and Principles for Developing Nexus Definitions and Conceptualizations: Lessons From FEW Nexus Studies
A methodology to optimize site-specific field capacity and irrigation thresholds
Evaluating climate change impacts in a heavily irrigated karst watershed using a coupled surface and groundwater model
Artificial neural network-empowered projected future rainfall intensity-duration-frequency curves under changing climate
Artificial Neural Network-Empowered Projected Future Rainfall Intensity-Duration-Frequency Curves Under Changing Climate
Artificial Neural Network-Empowered Projected Future Rainfall Intensity-Duration-Frequency Curves Under Changing Climate
Temporal disaggregation of hourly precipitation under changing climate over the Southeast United States
Projected mid-century rainfall erosivity under climate change over the southeastern United States
Improved forest dynamics leads to better hydrological predictions in watershed modeling
Site-specific irrigation scheduling using one-layer soil hydraulic properties and inverse modeling
Temporal and spatial variability in 3D soil macropore characteristics determined using X-ray computed tomography
Projected Mid-Century Rainfall Erosivity Under Climate Change Over the Southeastern United States
Impact of land use and tillage practice on soil macropore characteristics inferred from X-ray computed tomography
Improving the representation of forests in hydrological models
A hybrid framework for forecasting monthly reservoir inflow based on machine learning techniques with dynamic climate forecasts, satellite-based data, and climate phenomenon information
Using X-ray computed tomography to quantify variability in soil macropore characteristics in pastures
Assessment of impact in groundwater levels and stream-aquifer interaction due to increased groundwater withdrawal in the lower Apalachicola-Chattahoochee-Flint (ACF) River Basin using MODFLOW
Effect of ENSO modulation by decadal and multi-decadal climatic oscillations on contiguous United States streamflows
Effects of critical zone structure on patterns of flow connectivity induced by rainstorms in a steep forested catchment
Application of CORDEX-AFRICA and NEX-GDDP datasets for hydrologic projections under climate change in Lake Ziway sub-basin, Ethiopia
WEPPCLIFF: A command-line tool to process climate inputs for soil loss models
Comparison and evaluation of gridded precipitation datasets for streamflow simulation in data scarce watersheds of Ethiopia
Effect of Broiler Litter Application Method on Metal Runoff from Pastures
Modeling effectiveness of broiler litter application method for reducing phosphorus and nitrogen losses
Medium-range reference evapotranspiration forecasts for the contiguous United States based on multi-model numerical weather predictions