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, Hydrological Forecasting Using AI, and Remote Sensing and Land Use.
Spatiotemporal evolution and driving force analysis of drought characteristics in the Yellow River Basin
A novel flood conditioning factor based on topography for flood susceptibility modeling
A Study of the Effect of DEM Spatial Resolution on Flood Simulation in Distributed Hydrological Modeling
Fine-Grained High-Resolution Remote Sensing Image Change Detection by SAM-UNet Change Detection Model
Application of a New Hybrid Deep Learning Model That Considers Temporal and Feature Dependencies in Rainfall–Runoff Simulation
An integrated model chain for future flood risk prediction under land-use changes
Relationships between climate change, phenology, edaphic factors, and net primary productivity across the Tibetan Plateau
Developing a framework for urban flood modeling in Data-poor regions
A new avenue to improve the performance of integrated modeling for flash flood susceptibility assessment: Applying cluster algorithms
Urban flood risks and emerging challenges in a Chinese delta: The case of the Pearl River Delta
Twenty-three unsolved problems in hydrology (UPH) – a community perspective
Risk Assessment of Flood Disaster Induced by Typhoon Rainstorms in Guangdong Province, China
Dynamic monitoring of land-use/land-cover change and urban expansion in Shenzhen using Landsat imagery from 1988 to 2015
Extending flood forecasting lead time in a large watershed by coupling WRF QPF with a distributed hydrological model
Large-watershed flood forecasting with high-resolution distributed hydrological model
Improving Land Use/Cover Classification with a Multiple Classifier System Using AdaBoost Integration Technique
Improving flood forecasting capability of physically based distributed hydrological models by parameter optimization
Urban flood risk warning under rapid urbanization
Urban flood simulation based on the SWMM model
An effective depression filling algorithm for DEM-based 2-D surface flow modelling