Area of research
Water Science and Technology · Global and Planetary Change
Research interest
Research interests include Environmental science, Vegetation (pathology), Arid, Stability (learning theory), Finite element method, and Thermal conduction.
Enhanced River Connectivity Assessment Across Larger Areas Through Deep Learning With Dam Detection
Navigating Forestation Planning in Arid Environments Through Near-Natural Forestation Mapping and Uncertainty Quantification
Simulating vegetation potential and quantifying uncertainty for precision forestation in arid regions
Natural Vegetation Distribution in the Taklimakan Desert: Identification and Environmental Drivers
A two-step Bayesian network-based process sensitivity analysis for complex nitrogen reactive transport modeling
Automatedly identify dryland threatened species at large scale by using deep learning
Vegetation coverage precisely extracting and driving factors analysis in drylands
Spatial and temporal downscaling schemes to reconstruct high-resolution GRACE data: A case study in the Tarim River Basin, Northwest China
Simulation of potential vegetation distribution in arid areas at regional scale
Simulation of potential endangered species distribution in drylands with small sample size based on semi-supervised models
Precise vegetation restoration in arid regions based on potential natural vegetation and potential normalized difference vegetation index
Zonation-based prioritization of vegetation conservation for terminal lakes in drylands
Spatial and Temporal Downscaling Schemes to Reconstruct High-Resolution Grace Dataset: A Case Study in the Tarim River Basin, Northwest China
Evaluation and optimization of the water diversion system of ecohydrological restoration megaproject of Tarim River, China, through wavelet analysis and a neural network
Analysis of desertification combating needs based on potential vegetation NDVI—A case in the Hotan Oasis
Analysis of the Expansion Characteristics and Carrying Capacity of Oasis Farmland in Northwestern China in Recent 40 Years
Quantifying the Uncertainty of the Future Hydrological Impacts of Climate Change: Comparative Analysis of an Advanced Hierarchical Sensitivity in Humid and Semiarid Basins
Hierarchical sensitivity analysis for a large-scale process-based hydrological model applied to an Amazonian watershed
Hierarchical Sensitivity Analysis for Large-scale Process-based Hydrological Modeling with Application in an Amazonian Watershed
Quantifying the Uncertainty of the Future Hydrological Impacts of Climate Change: an Advanced Hierarchical Sensitivity Analysis in a Humid Subtropical Basin, China
Does the long-term precipitation variations and dry-wet conditions exist in the arid areas? A case study from China
A New Optimization Method for the Layout of Pumping Wells in Oases: Application in the Qira Oasis, Northwest China
Hierarchical Sensitivity Analysis for Large Scale Process-basedHydrological Modeling with Application in an AmazonianWatershed
Agricultural Oasis Expansion and Its Impact on Oasis Landscape Patterns in the Southern Margin of Tarim Basin, Northwest China
Development of an irrigation scheduling software based on model predicted crop water stress
Multiquadric RBF-FD method for the convection-dominated diffusion problems base on Shishkin nodes
A highly efficient operator-splitting finite element method for 2D/3D nonlinear Allen–Cahn equation
A hybrid Bayesian network approach for trade-offs between environmental flows and agricultural water using dynamic discretization
A decision-making framework to model environmental flow requirements in oasis areas using Bayesian networks
Quantification of Environmental Flow Requirements to Support Ecosystem Services of Oasis Areas: A Case Study in Tarim Basin, Northwest China