Area of research
Water Science and Technology · Global and Planetary Change
Research interest
Research focused on Environmental science and Flood myth, with related work in Dam break, Storm, Arsenic. Notable publications include 'Calculation method and application of loss of life caused by dam break in China', 'Changes of seasonal storm properties in California and Nevada from an ensemble of climate projections', and 'Reservoir Flood Season Segmentation and Optimal Operation of Flood-Limiting Water Levels'.
Co-transport of arsenic and micro/nano-plastics in saturated soil
Environmental controls on carbon and water fluxes of a wheat-maize rotation cropland over the Huaibei Plain of China
Upscaling solute transport in rough single-fractured media with matrix diffusion using a time fractional advection-dispersion equation
Some (fish might) like it hot: Habitat quality and fish growth from past to future climates
Multiple Wavelet Coherence to Evaluate Local Multivariate Relationships in a Groundwater System
Quantifying colloid fate and transport through dense vegetation and soil systems using a particle-plugging tempered fractional-derivative model
Fractal nature of groundwater level fluctuations affected by riparian zone vegetation water use and river stage variations
Simulating multi-dimensional anomalous diffusion in nonstationary media using variable-order vector fractional-derivative models with Kansa solver
Calculation method and application of loss of life caused by dam break in China
Ensemble Method for Reservoir Flood Season Segmentation
Changes of seasonal storm properties in California and Nevada from an ensemble of climate projections
Evaluating Differences in Transport Behavior of Sodium Chloride and Brilliant Blue FCF in Sand Columns
Reservoir Flood Season Segmentation and Optimal Operation of Flood-Limiting Water Levels