Area of research
Water Science and Technology · Global and Planetary Change
Research interest
Research interests include Environmental science, Hydrology (agriculture), Flood myth, Surface runoff, Precipitation, and Climatology.
Probabilistic runoff forecasting by integrating improved conceptual hydrological model with interpretable deep learning approach in a typical karst basin, Southwest China
Comprehensive evaluation and attribution analysis of baseflow variation in a typical karst basin, Southwest China
Impact of Runoff Forecast Errors on the Optimal Operation of Reservoir Power Generation
Early warning forecasting of river ecological flow in a typical Karst basin, southwest China: Leveraging baseflow segmentation and interpretable machine learning
Characteristics, prediction model and driving mechanism of multidimensional daily scale propagation from meteorological to agricultural drought in Guangxi, China
Physically informed multivariate prediction of structural joint deformation in CFRDs: A fusion approach with interpretable decomposition and hybrid machine learning
Quantifying uncertainty sources in runoff change attribution based on the Budyko framework
Estimates of the Land Surface Hydrology from the Community Land Model Version 5 (CLM5) with Three Meteorological Forcing Datasets over China
The combined impact of historical climate change and human activities on reservoir flood control risk
Hydrometeorological Insights into the Forecasting Performance of Multi-Source Weather over a Typical Hill-Karst Basin, Southwest China
A comprehensive assessment of runoff dynamics in response to climate change and human activities in a typical karst watershed, southwest China
The simulation, regulation capacity assessment and coping strategy of rainstorm runoff waterlogging in Zhu pai-chong Basin of Nanning, China
Simulation of dam-break flood and risk assessment: a case study of Chengbi River Dam in Baise, China
Simulation of one-dimensional dam-break flood routing based on HEC-RAS
Impact of Future Climate and Land Use Changes on Runoff in a Typical Karst Basin, Southwest China
Comprehensive evaluation and comparison of ten precipitation products in terms of accuracy and stability over a typical mountain basin, Southwest China
Evolution of Drought Trends under Climate Change Scenarios in Karst Basin
Multidimensional identification of single and regional meteorological drought considering flash‐season synthesis employed daily standardized effective precipitation and drought index in Guangxi, China
Optimal Scheduling of Reservoir Flood Control under Non-Stationary Conditions
Flood Season Staging and Adjustment of Limited Water Level for a Multi-Purpose Reservoir
Downscaling Correction and Hydrological Applicability of the Three Latest High-Resolution Satellite Precipitation Products (GPM, GSMAP, and MSWEP) in the Pingtang Catchment, China
Study on the Optimization and Stability of Machine Learning Runoff Prediction Models in the Karst Area
Research on Reservoir Optimal Operation Based on Long-Term and Mid-Long-Term Nested Models
Combining Standard Artificial Intelligence Models, Pre-Processing Techniques, and Post-Processing Methods to Improve the Accuracy of Monthly Runoff Predictions in Karst-Area Watersheds
Evaluation of Hydrological Simulation in a Karst Basin with Different Calibration Methods and Rainfall Inputs
Drought Assessment Based on Fused Satellite and Station Precipitation Data: An Example from the Chengbi River Basin, China
Climate change impact on extreme value and its frequency distribution function in a karst basin, Southwest China
A High-Resolution Flood Inundation Archive (2016–the Present) from Sentinel-1 SAR Imagery over CONUS
Impact of climate change and human activities on the baseflow in a typical karst basin, Southwest China
Predicting Flood Property Insurance Claims over CONUS, Fusing Big Earth Observation Data