Area of research
Water Science and Technology · Global and Planetary Change
Research interest
Research interests include Hydrology and Watershed Management Studies, Flood Risk Assessment and Management, Geological formations and processes, and Geology and Paleoclimatology Research.
A Web-Based High-resolution Global Water and Flood Mapping Platform
Radar Scattering Physics Challenges Supervised Learning in Flood Observation
AI-enhanced simulation of sediment transport in cold regions
Warming and wetting-driven increases in landscape instability and river sediment loads in High Mountain Asia
Regime shifts in sediment transport driven by warming-intensified cryosphere degradation and hydrological fluctuation
Devastating Flooding Despite Early Warning: Lessons Learned from the Nepal and Kenya Floods
Cryosphere-fed rivers in a warming climate, 1950-205
Anthropogenic eutrophication and stratification strength control hypoxia in the Yangtze Estuary
Anthropogenic eutrophication and stratification strength control hypoxia in the Yangtze Estuary
Earth Observation to Address Inequities in Post‐Flood Recovery
The competing controls of glaciers, precipitation, and vegetation on high-mountain fluvial sediment yields.
CSDMS Data Components: data–model integration tools for Earth surface processes modeling
Fluvial Sediment Load Characteristics from the Yangtze River to the Sea During Severe Droughts
Iterative integration of deep learning in hybrid Earth surface system modelling
Shifted sediment-transport regimes by climate change and amplified hydrological variability in cryosphere-fed rivers
Assessing the Relative Performance of GNSS-R Flood Extent Observations: Case Study in South Sudan
Earth observations into action: the systemic integration of earth observation applications into national risk reduction decision structures
Shifted sediment-transport regimes by climate change and amplified hydrological variability in cryosphere-fed rivers.
Simulating Changes in Hydrological Extremes—Future Scenarios for Morocco
Reply to: Concerns about data linking delta land gain to human action.
Simulating climate-cryosphere-driven sediment transport dynamics in cold regions by Sediment-Availability-Transport Model
CSDMS Data Components: data-model integration tools for Earth surface processes modeling
Earth Observation to Monitor and Redress Inequitable Post-Flood Recovery
Author Correction: Global-scale human impact on delta morphology has led to net land area gain
Basin-scale sediment transport and sediment concentration-discharge relationship modeling in a permafrost-dominated basin
Substantial increases in riverine sediment loads in a warmer and wetter Third Pole
Satellite imaging reveals increased proportion of population exposed to floods
Exceptional increases in fluvial sediment fluxes in a warmer and wetter High Mountain Asia
Air Temperature Regulates Erodible Landscape, Water, and Sediment Fluxes in the Permafrost‐Dominated Catchment on the Tibetan Plateau
Air Temperature Regulates Erodible Landscape, Water, and Sediment Fluxes in the Permafrost‐Dominated Catchment on the Tibetan Plateau
Collaborative Research: IRES Track II: Rivers of the Andes Field Training
PREEVENTS Track 1: A transdisciplinary approach to next-gen natural hazard modeling: Improving accuracy and usability of earth surface process models for pre-event risk assessment
Collaborative Research: An EarthCube Domain Workshop integrating the inland-waters biogeochemistry and fluvial sedimentology communities, April 22-24.
Collaborative Research: Investigating Human and Climate Influences on Delta Evolution Using Fluvial Discharge and Coastal Evolution Models